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Proteintech his tag
His Tag, supplied by Proteintech, used in various techniques. Bioz Stars score: 96/100, based on 998 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/anti+his+tag+antibody/6*His%2C+His-Tag+Antibody/pmc13010945-36-25-66
Average 96 stars, based on 998 article reviews
his tag - by Bioz Stars, 2026-09
96/100 stars

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Purification:

Article Title: Depletion of CD25 + cells restores Th1, Th2 and Th17 responses and mitigates Eimeria maxima infection in chickens
Article Snippet: .. Purified CD25 and splenocyte protein were resolved by 12 % SDS-PAGE, transferred to PVDF membranes (Merck, Darmstadt, Hessen, Germany), blocked with 5 % skim milk/TBST, and probed overnight at 4°C with either anti-His-tag antibody (1:5,000, Proteintech, Wuhan, China) or rat anti-chicken CD25 serum (1:100). .. Membranes were washed, incubated with HRP-conjugated goat anti-mouse IgG (1:5,000, Proteintech, Wuhan, China) or goat anti-rat IgG (1:5,000, Proteintech, Wuhan, China) for 1 h at 37°C, and developed using ECL (Image Quant 300, Cytiva, Marlborough, MA, USA).

Western Blot:

Article Title: A highly potent nanobody-based bispecific therapeutic provides broad-spectrum protection against ebolavirus.
Article Snippet: .. For Western blot analysis, GP-dMLD was detected using an anti-His tag antibody (Proteintech; 1:1,000 dilution) followed by an anti-Fc fluorescent secondary antibody (Proteintech; 1:10,000 dilution) . ..

Article Title: Characterization of Toll-like receptor 22 in striped catfish (Pangasianodon hypophthalmus): Recognition of Gram-positive and Gram-negative bacteria.
Article Snippet: Toll-like receptor 22 (TLR22) in Pangasianodon hypophthalmus is a key component of the fish innate immune system, responsible for recognizing pathogen-associated molecular patterns (PAMPs).. However, its bacterial recognition mechanisms remain largely unexplored, particularly in striped catfish.. In this study, four recombinant subunits of TLR22 TLR22 (LRR1-17), TLR22 (LRR1-13), TLR22 (LRR1-10), and TLR22 (LRR1-4) were successfully produced in Escherichia coli SHuffle® T7 Express, and protein expression was confirmed via SDSPAGE and Western blot analysis.

Article Title: A broadly applicable split-luciferase biosensor approach for rapid antibody detection in emerging infectious diseases
Article Snippet: His-tagged proteins were purified with Mag-Beads His-Tag Protein Purification (BBI, China) according to the manufacturer’s instructions. .. Expression and purity were assessed by SDS–PAGE and Western blotting using an HRP-conjugated anti-His-tag antibody (1:3,000; Proteintech, USA). .. Protein concentrations were determined with the PierceTM BCA Protein Assay Kit (Thermo Fisher Scientific, USA), and final products were aliquoted and stored at −80 °C for subsequent use.

Article Title: A broadly applicable split-luciferase biosensor approach for rapid antibody detection in emerging infectious diseases.
Article Snippet: His-tagged proteins were purified with MagBeads His-Tag Protein Purification (BBI, China) according to the manufacturer’s instructions. .. Expression and purity were assessed by SDS–PAGE and Western blotting using an HRP-conjugated anti-His-tag antibody (1:3,000; Proteintech, USA). .. Protein concentrations were determined with the PierceTM BCA Protein Assay Kit (Thermo Fisher Scientific, USA), and final products were aliquoted and stored at −80 °C for subsequent use.

Incubation:

Article Title: A high-yield protein expression platform in the unicellular red alga Cyanidioschyzon merolae
Article Snippet: Transferred PVDF membranes were blocked overnight at 4°C with Blocking One (Nacalai Tesque) and then incubated with a rabbit anti-GFP primary antibody (ab6556, Abcam) diluted 1:5000 in Blocking One, followed by a horseradish peroxidase-conjugated goat anti-rabbit IgG secondary antibody (ab6721, Abcam) diluted 1:10,000. .. For the detection of anti-GFP-VHH fused with FLAG and His tags, membranes were incubated with an HRP-conjugated anti-His tag antibody (HRP-66005, Proteintech) diluted 1:5000. .. An HRP-conjugated anti-DYKDDDDK tag antibody (HRP-66008, Proteintech) diluted 1:5000 was used for the detection of the FLAG tag.

Article Title: A high-yield protein expression platform in the unicellular red alga Cyanidioschyzon merolae.
Article Snippet: Transferred PVDF membranes were blocked overnight at 4°C with Blocking One (Nacalai Tesque) and then incubated with a rabbit anti-GFP primary antibody (ab6556, Abcam) diluted 1:5000 in Blocking One, followed by a horseradish peroxidase– conjugated goat anti-rabbit IgG secondary antibody (ab6721, Abcam) diluted 1:10000. .. For the detection of anti-GFP-VHH fused with FLAG and His tags, membranes were incubated with an HRP-conjugated anti–His tag antibody (HRP-66005, Proteintech) diluted 1:5000. .. An HRP-conjugated anti-DYKDDDDK tag antibody (HRP-66008, Proteintech) diluted 1:5000 was used for the detection of the FLAG tag.

Article Title: IGSF3 binds to TNFR2 on Treg to facilitate immunosuppression in cervical cancer.
Article Snippet: 11 The clinical success of immune checkpoint blockades has revolutionized oncology; 12 however, their efficacy in cervical cancer remains limited, primarily due to intricate tumor 13 immune evasion mechanisms.. Here, we identify elevated IGSF3 expression on tumor cells as 14 a key driver enhancing regulatory T cell (Treg) infiltration and function.. Crucially, we reveal a 15 previously unrecognized ligand-receptor pair: IGSF3 on cervical cancer cells binds to TNFR2 16 on Tregs, activating NF-κB pathway and thereby amplifying Treg-mediated 17 immunosuppression.

Expressing:

Article Title: A broadly applicable split-luciferase biosensor approach for rapid antibody detection in emerging infectious diseases
Article Snippet: His-tagged proteins were purified with Mag-Beads His-Tag Protein Purification (BBI, China) according to the manufacturer’s instructions. .. Expression and purity were assessed by SDS–PAGE and Western blotting using an HRP-conjugated anti-His-tag antibody (1:3,000; Proteintech, USA). .. Protein concentrations were determined with the PierceTM BCA Protein Assay Kit (Thermo Fisher Scientific, USA), and final products were aliquoted and stored at −80 °C for subsequent use.

Article Title: A broadly applicable split-luciferase biosensor approach for rapid antibody detection in emerging infectious diseases.
Article Snippet: His-tagged proteins were purified with MagBeads His-Tag Protein Purification (BBI, China) according to the manufacturer’s instructions. .. Expression and purity were assessed by SDS–PAGE and Western blotting using an HRP-conjugated anti-His-tag antibody (1:3,000; Proteintech, USA). .. Protein concentrations were determined with the PierceTM BCA Protein Assay Kit (Thermo Fisher Scientific, USA), and final products were aliquoted and stored at −80 °C for subsequent use.

Immunoprecipitation:

Article Title: IGSF3 binds to TNFR2 on Treg to facilitate immunosuppression in cervical cancer.
Article Snippet: 11 The clinical success of immune checkpoint blockades has revolutionized oncology; 12 however, their efficacy in cervical cancer remains limited, primarily due to intricate tumor 13 immune evasion mechanisms.. Here, we identify elevated IGSF3 expression on tumor cells as 14 a key driver enhancing regulatory T cell (Treg) infiltration and function.. Crucially, we reveal a 15 previously unrecognized ligand-receptor pair: IGSF3 on cervical cancer cells binds to TNFR2 16 on Tregs, activating NF-κB pathway and thereby amplifying Treg-mediated 17 immunosuppression.

Control:

Article Title: IGSF3 binds to TNFR2 on Treg to facilitate immunosuppression in cervical cancer.
Article Snippet: 11 The clinical success of immune checkpoint blockades has revolutionized oncology; 12 however, their efficacy in cervical cancer remains limited, primarily due to intricate tumor 13 immune evasion mechanisms.. Here, we identify elevated IGSF3 expression on tumor cells as 14 a key driver enhancing regulatory T cell (Treg) infiltration and function.. Crucially, we reveal a 15 previously unrecognized ligand-receptor pair: IGSF3 on cervical cancer cells binds to TNFR2 16 on Tregs, activating NF-κB pathway and thereby amplifying Treg-mediated 17 immunosuppression.



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Abbkine Inc anti his tag mouse monoclonal antibody
Anti His Tag Mouse Monoclonal Antibody, supplied by Abbkine Inc, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Rockland Immunochemicals anti his tag monoclonal antibody
Characterization of Recombinant Proteins: MICA and anti-MICA scFvs. (A) Molecular model, shown as a ribbon representation, of the variable fragment of the anti-MICA scFvs. The framework is displayed in white, the light chain CDRs are shown in cyan, and the heavy chain CDRs are shown in yellow. The residues with mutations are shown as magenta spheres [residues 32 (CDR L1), 164 (CDR H1), and 188/190 (CDR H2)]. (B) Schematic diagram of the scFv gene. The modified pET-15b vector was used for the expression of the WT and Beta mutant scFvs, each carrying four mutations: I32Y in CDR1 of the VL, and S164F, P188W, and G190W in CDR1, CDR2, and CDR2 of the VH, respectively. Recombinant proteins were expressed in E. coli BL21(DE3). (C) SDS-PAGE analysis showing the purity of recombinant proteins: WT scFv, Beta mutant scFv, and MICA. Proteins were resolved on a 12% acrylamide gel under reducing conditions. SDS-PAGE results show the soluble fraction (SF), unbound protein (UBP), elution of purified scFv (E), renatured proteins (R) and inclusion bodies (IB). MW, molecular weight. (D-E) Western blot analysis confirming the identity of scFvs and MICA using an anti-HisTag antibody. For the identification of the WT and Beta mutant scFvs, Anti-6xHis Epitope Tag mouse <t>monoclonal</t> antibody conjugated with peroxidase (200-303-382) was used at a dilution of 1:1000. For the identification of MICA, a biotinylated Anti-MICA antibody (BAMO3 (BAFI300, BamOmaB)) and Streptavidin were used at a dilution of 1:2000. A total of 2 μg of purified protein was loaded. The negative control (Ctrl -) for MICA detection was WT scFv and MICA protein was used for scFv detection. Original gel is presented in Fig. S1, Supplementary information.
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Abmart Inc anti his tag antibody
Characterization of Recombinant Proteins: MICA and anti-MICA scFvs. (A) Molecular model, shown as a ribbon representation, of the variable fragment of the anti-MICA scFvs. The framework is displayed in white, the light chain CDRs are shown in cyan, and the heavy chain CDRs are shown in yellow. The residues with mutations are shown as magenta spheres [residues 32 (CDR L1), 164 (CDR H1), and 188/190 (CDR H2)]. (B) Schematic diagram of the scFv gene. The modified pET-15b vector was used for the expression of the WT and Beta mutant scFvs, each carrying four mutations: I32Y in CDR1 of the VL, and S164F, P188W, and G190W in CDR1, CDR2, and CDR2 of the VH, respectively. Recombinant proteins were expressed in E. coli BL21(DE3). (C) SDS-PAGE analysis showing the purity of recombinant proteins: WT scFv, Beta mutant scFv, and MICA. Proteins were resolved on a 12% acrylamide gel under reducing conditions. SDS-PAGE results show the soluble fraction (SF), unbound protein (UBP), elution of purified scFv (E), renatured proteins (R) and inclusion bodies (IB). MW, molecular weight. (D-E) Western blot analysis confirming the identity of scFvs and MICA using an anti-HisTag antibody. For the identification of the WT and Beta mutant scFvs, Anti-6xHis Epitope Tag mouse <t>monoclonal</t> antibody conjugated with peroxidase (200-303-382) was used at a dilution of 1:1000. For the identification of MICA, a biotinylated Anti-MICA antibody (BAMO3 (BAFI300, BamOmaB)) and Streptavidin were used at a dilution of 1:2000. A total of 2 μg of purified protein was loaded. The negative control (Ctrl -) for MICA detection was WT scFv and MICA protein was used for scFv detection. Original gel is presented in Fig. S1, Supplementary information.
Anti His Tag Antibody, supplied by Abmart Inc, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Abbkine Inc anti his tag mouse monoclonal antibody 5c3
Characterization of Recombinant Proteins: MICA and anti-MICA scFvs. (A) Molecular model, shown as a ribbon representation, of the variable fragment of the anti-MICA scFvs. The framework is displayed in white, the light chain CDRs are shown in cyan, and the heavy chain CDRs are shown in yellow. The residues with mutations are shown as magenta spheres [residues 32 (CDR L1), 164 (CDR H1), and 188/190 (CDR H2)]. (B) Schematic diagram of the scFv gene. The modified pET-15b vector was used for the expression of the WT and Beta mutant scFvs, each carrying four mutations: I32Y in CDR1 of the VL, and S164F, P188W, and G190W in CDR1, CDR2, and CDR2 of the VH, respectively. Recombinant proteins were expressed in E. coli BL21(DE3). (C) SDS-PAGE analysis showing the purity of recombinant proteins: WT scFv, Beta mutant scFv, and MICA. Proteins were resolved on a 12% acrylamide gel under reducing conditions. SDS-PAGE results show the soluble fraction (SF), unbound protein (UBP), elution of purified scFv (E), renatured proteins (R) and inclusion bodies (IB). MW, molecular weight. (D-E) Western blot analysis confirming the identity of scFvs and MICA using an anti-HisTag antibody. For the identification of the WT and Beta mutant scFvs, Anti-6xHis Epitope Tag mouse <t>monoclonal</t> antibody conjugated with peroxidase (200-303-382) was used at a dilution of 1:1000. For the identification of MICA, a biotinylated Anti-MICA antibody (BAMO3 (BAFI300, BamOmaB)) and Streptavidin were used at a dilution of 1:2000. A total of 2 μg of purified protein was loaded. The negative control (Ctrl -) for MICA detection was WT scFv and MICA protein was used for scFv detection. Original gel is presented in Fig. S1, Supplementary information.
Anti His Tag Mouse Monoclonal Antibody 5c3, supplied by Abbkine Inc, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Protein interactions and eukaryotic protein acquisition. (A) Schematic overview of the screening strategy and identification of T. gondii KCR. (B) Co‐immunoprecipitation identification of the interaction between KCR and murine CSF2Rα input: cell lysates from HEK 293T cells co‐transfected with pcDNA3.1‐KCR and pCAGGS‐CSF2R for 24 h; IP: KCR, CSF2α or IgG: immunoprecipitation was performed using Flag‐tag mouse <t>mAb,</t> <t>His‐tag</t> mouse mAb or mouse IgG; IB: KCR or CSF2α: immunoblot analysis was performed using Flag‐tag rabbit mAb or His‐tag rabbit pAb. (C) Acquisition of KCR eukaryotic protein. Lane M: standard molecular marker for protein; lane 1: cell lysates from HEK 293T cells transfected with pcDNA3.1‐KCR for 24 h; lane 2: purified KCR eukaryotic protein. (D) Western blot analysis of KCR M: standard molecular marker for protein; lane 3: his‐tag in purified KCR was identified by His‐tag mouse mAb.
His Tag Mouse Mab, supplied by Abmart Inc, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Proteintech his tag
Protein interactions and eukaryotic protein acquisition. (A) Schematic overview of the screening strategy and identification of T. gondii KCR. (B) Co‐immunoprecipitation identification of the interaction between KCR and murine CSF2Rα input: cell lysates from HEK 293T cells co‐transfected with pcDNA3.1‐KCR and pCAGGS‐CSF2R for 24 h; IP: KCR, CSF2α or IgG: immunoprecipitation was performed using Flag‐tag mouse <t>mAb,</t> <t>His‐tag</t> mouse mAb or mouse IgG; IB: KCR or CSF2α: immunoblot analysis was performed using Flag‐tag rabbit mAb or His‐tag rabbit pAb. (C) Acquisition of KCR eukaryotic protein. Lane M: standard molecular marker for protein; lane 1: cell lysates from HEK 293T cells transfected with pcDNA3.1‐KCR for 24 h; lane 2: purified KCR eukaryotic protein. (D) Western blot analysis of KCR M: standard molecular marker for protein; lane 3: his‐tag in purified KCR was identified by His‐tag mouse mAb.
His Tag, supplied by Proteintech, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Proteintech hrp conjugated polymer secondary antibody
Protein interactions and eukaryotic protein acquisition. (A) Schematic overview of the screening strategy and identification of T. gondii KCR. (B) Co‐immunoprecipitation identification of the interaction between KCR and murine CSF2Rα input: cell lysates from HEK 293T cells co‐transfected with pcDNA3.1‐KCR and pCAGGS‐CSF2R for 24 h; IP: KCR, CSF2α or IgG: immunoprecipitation was performed using Flag‐tag mouse <t>mAb,</t> <t>His‐tag</t> mouse mAb or mouse IgG; IB: KCR or CSF2α: immunoblot analysis was performed using Flag‐tag rabbit mAb or His‐tag rabbit pAb. (C) Acquisition of KCR eukaryotic protein. Lane M: standard molecular marker for protein; lane 1: cell lysates from HEK 293T cells transfected with pcDNA3.1‐KCR for 24 h; lane 2: purified KCR eukaryotic protein. (D) Western blot analysis of KCR M: standard molecular marker for protein; lane 3: his‐tag in purified KCR was identified by His‐tag mouse mAb.
Hrp Conjugated Polymer Secondary Antibody, supplied by Proteintech, used in various techniques. Bioz Stars score: 97/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Cowin Biosciences mouse anti his tag mab
Protein interactions and eukaryotic protein acquisition. (A) Schematic overview of the screening strategy and identification of T. gondii KCR. (B) Co‐immunoprecipitation identification of the interaction between KCR and murine CSF2Rα input: cell lysates from HEK 293T cells co‐transfected with pcDNA3.1‐KCR and pCAGGS‐CSF2R for 24 h; IP: KCR, CSF2α or IgG: immunoprecipitation was performed using Flag‐tag mouse <t>mAb,</t> <t>His‐tag</t> mouse mAb or mouse IgG; IB: KCR or CSF2α: immunoblot analysis was performed using Flag‐tag rabbit mAb or His‐tag rabbit pAb. (C) Acquisition of KCR eukaryotic protein. Lane M: standard molecular marker for protein; lane 1: cell lysates from HEK 293T cells transfected with pcDNA3.1‐KCR for 24 h; lane 2: purified KCR eukaryotic protein. (D) Western blot analysis of KCR M: standard molecular marker for protein; lane 3: his‐tag in purified KCR was identified by His‐tag mouse mAb.
Mouse Anti His Tag Mab, supplied by Cowin Biosciences, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Protein interactions and eukaryotic protein acquisition. (A) Schematic overview of the screening strategy and identification of T. gondii KCR. (B) Co‐immunoprecipitation identification of the interaction between KCR and murine CSF2Rα input: cell lysates from HEK 293T cells co‐transfected with pcDNA3.1‐KCR and pCAGGS‐CSF2R for 24 h; IP: KCR, CSF2α or IgG: immunoprecipitation was performed using Flag‐tag mouse <t>mAb,</t> <t>His‐tag</t> mouse mAb or mouse IgG; IB: KCR or CSF2α: immunoblot analysis was performed using Flag‐tag rabbit mAb or His‐tag rabbit pAb. (C) Acquisition of KCR eukaryotic protein. Lane M: standard molecular marker for protein; lane 1: cell lysates from HEK 293T cells transfected with pcDNA3.1‐KCR for 24 h; lane 2: purified KCR eukaryotic protein. (D) Western blot analysis of KCR M: standard molecular marker for protein; lane 3: his‐tag in purified KCR was identified by His‐tag mouse mAb.
Anti His Tag, supplied by Proteintech, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/anti+his+tag+antibody/6*His%2C+His-Tag+Antibody/pmc12914543-97-153-155
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R&D Systems anti his pe
Protein interactions and eukaryotic protein acquisition. (A) Schematic overview of the screening strategy and identification of T. gondii KCR. (B) Co‐immunoprecipitation identification of the interaction between KCR and murine CSF2Rα input: cell lysates from HEK 293T cells co‐transfected with pcDNA3.1‐KCR and pCAGGS‐CSF2R for 24 h; IP: KCR, CSF2α or IgG: immunoprecipitation was performed using Flag‐tag mouse <t>mAb,</t> <t>His‐tag</t> mouse mAb or mouse IgG; IB: KCR or CSF2α: immunoblot analysis was performed using Flag‐tag rabbit mAb or His‐tag rabbit pAb. (C) Acquisition of KCR eukaryotic protein. Lane M: standard molecular marker for protein; lane 1: cell lysates from HEK 293T cells transfected with pcDNA3.1‐KCR for 24 h; lane 2: purified KCR eukaryotic protein. (D) Western blot analysis of KCR M: standard molecular marker for protein; lane 3: his‐tag in purified KCR was identified by His‐tag mouse mAb.
Anti His Pe, supplied by R&D Systems, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Image Search Results


Characterization of Recombinant Proteins: MICA and anti-MICA scFvs. (A) Molecular model, shown as a ribbon representation, of the variable fragment of the anti-MICA scFvs. The framework is displayed in white, the light chain CDRs are shown in cyan, and the heavy chain CDRs are shown in yellow. The residues with mutations are shown as magenta spheres [residues 32 (CDR L1), 164 (CDR H1), and 188/190 (CDR H2)]. (B) Schematic diagram of the scFv gene. The modified pET-15b vector was used for the expression of the WT and Beta mutant scFvs, each carrying four mutations: I32Y in CDR1 of the VL, and S164F, P188W, and G190W in CDR1, CDR2, and CDR2 of the VH, respectively. Recombinant proteins were expressed in E. coli BL21(DE3). (C) SDS-PAGE analysis showing the purity of recombinant proteins: WT scFv, Beta mutant scFv, and MICA. Proteins were resolved on a 12% acrylamide gel under reducing conditions. SDS-PAGE results show the soluble fraction (SF), unbound protein (UBP), elution of purified scFv (E), renatured proteins (R) and inclusion bodies (IB). MW, molecular weight. (D-E) Western blot analysis confirming the identity of scFvs and MICA using an anti-HisTag antibody. For the identification of the WT and Beta mutant scFvs, Anti-6xHis Epitope Tag mouse monoclonal antibody conjugated with peroxidase (200-303-382) was used at a dilution of 1:1000. For the identification of MICA, a biotinylated Anti-MICA antibody (BAMO3 (BAFI300, BamOmaB)) and Streptavidin were used at a dilution of 1:2000. A total of 2 μg of purified protein was loaded. The negative control (Ctrl -) for MICA detection was WT scFv and MICA protein was used for scFv detection. Original gel is presented in Fig. S1, Supplementary information.

Journal: Biotechnology Reports

Article Title: Comparative analysis of anti-MICA scFv affinities: Insights from three label-free biophysical methods and biological validation

doi: 10.1016/j.btre.2026.e00955

Figure Lengend Snippet: Characterization of Recombinant Proteins: MICA and anti-MICA scFvs. (A) Molecular model, shown as a ribbon representation, of the variable fragment of the anti-MICA scFvs. The framework is displayed in white, the light chain CDRs are shown in cyan, and the heavy chain CDRs are shown in yellow. The residues with mutations are shown as magenta spheres [residues 32 (CDR L1), 164 (CDR H1), and 188/190 (CDR H2)]. (B) Schematic diagram of the scFv gene. The modified pET-15b vector was used for the expression of the WT and Beta mutant scFvs, each carrying four mutations: I32Y in CDR1 of the VL, and S164F, P188W, and G190W in CDR1, CDR2, and CDR2 of the VH, respectively. Recombinant proteins were expressed in E. coli BL21(DE3). (C) SDS-PAGE analysis showing the purity of recombinant proteins: WT scFv, Beta mutant scFv, and MICA. Proteins were resolved on a 12% acrylamide gel under reducing conditions. SDS-PAGE results show the soluble fraction (SF), unbound protein (UBP), elution of purified scFv (E), renatured proteins (R) and inclusion bodies (IB). MW, molecular weight. (D-E) Western blot analysis confirming the identity of scFvs and MICA using an anti-HisTag antibody. For the identification of the WT and Beta mutant scFvs, Anti-6xHis Epitope Tag mouse monoclonal antibody conjugated with peroxidase (200-303-382) was used at a dilution of 1:1000. For the identification of MICA, a biotinylated Anti-MICA antibody (BAMO3 (BAFI300, BamOmaB)) and Streptavidin were used at a dilution of 1:2000. A total of 2 μg of purified protein was loaded. The negative control (Ctrl -) for MICA detection was WT scFv and MICA protein was used for scFv detection. Original gel is presented in Fig. S1, Supplementary information.

Article Snippet: The identity of MICA and scFvs proteins was confirmed by western blot using a HRP-conjugated anti-His tag monoclonal antibody (200-303-382, Rockland, USA).

Techniques: Recombinant, Modification, Plasmid Preparation, Expressing, Mutagenesis, SDS Page, Acrylamide Gel Assay, Purification, Molecular Weight, Western Blot, Negative Control

Protein interactions and eukaryotic protein acquisition. (A) Schematic overview of the screening strategy and identification of T. gondii KCR. (B) Co‐immunoprecipitation identification of the interaction between KCR and murine CSF2Rα input: cell lysates from HEK 293T cells co‐transfected with pcDNA3.1‐KCR and pCAGGS‐CSF2R for 24 h; IP: KCR, CSF2α or IgG: immunoprecipitation was performed using Flag‐tag mouse mAb, His‐tag mouse mAb or mouse IgG; IB: KCR or CSF2α: immunoblot analysis was performed using Flag‐tag rabbit mAb or His‐tag rabbit pAb. (C) Acquisition of KCR eukaryotic protein. Lane M: standard molecular marker for protein; lane 1: cell lysates from HEK 293T cells transfected with pcDNA3.1‐KCR for 24 h; lane 2: purified KCR eukaryotic protein. (D) Western blot analysis of KCR M: standard molecular marker for protein; lane 3: his‐tag in purified KCR was identified by His‐tag mouse mAb.

Journal: Transboundary and Emerging Diseases

Article Title: Toxoplasma gondii KCR is a Noncanonical Modulator of CSF2 Signaling that Targets the CSF2Rα–JAK2/STAT5 Axis

doi: 10.1155/tbed/8426765

Figure Lengend Snippet: Protein interactions and eukaryotic protein acquisition. (A) Schematic overview of the screening strategy and identification of T. gondii KCR. (B) Co‐immunoprecipitation identification of the interaction between KCR and murine CSF2Rα input: cell lysates from HEK 293T cells co‐transfected with pcDNA3.1‐KCR and pCAGGS‐CSF2R for 24 h; IP: KCR, CSF2α or IgG: immunoprecipitation was performed using Flag‐tag mouse mAb, His‐tag mouse mAb or mouse IgG; IB: KCR or CSF2α: immunoblot analysis was performed using Flag‐tag rabbit mAb or His‐tag rabbit pAb. (C) Acquisition of KCR eukaryotic protein. Lane M: standard molecular marker for protein; lane 1: cell lysates from HEK 293T cells transfected with pcDNA3.1‐KCR for 24 h; lane 2: purified KCR eukaryotic protein. (D) Western blot analysis of KCR M: standard molecular marker for protein; lane 3: his‐tag in purified KCR was identified by His‐tag mouse mAb.

Article Snippet: Flag‐tag mouse monoclonal antibody (mAb) (#M20008), His‐tag mouse mAb (# M20001 ), and mouse IgG (#B30010M) were purchased from Abmart Biotech, Inc. (Shanghai, China).

Techniques: Immunoprecipitation, Transfection, FLAG-tag, Western Blot, Marker, Purification