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anti kv2 1  (NeuroMab)


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    Structured Review

    NeuroMab anti kv2 1
    Anti Kv2 1, supplied by NeuroMab, used in various techniques. Bioz Stars score: 95/100, based on 126 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/kv2%2E1+antibody/Anti-Kv2%2E1+K%2B+Channel+Antibody/pmc13060592-291-53-55
    Average 95 stars, based on 126 article reviews
    anti kv2 1 - by Bioz Stars, 2026-09
    95/100 stars

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    Related Articles

    Incubation:

    Article Title: NPC1-dependent alterations in K V 2.1-Ca V 1.2 nanodomains drive neuronal death in models of Niemann-Pick Type C disease.
    Article Snippet: After 30min incubation at RT in TrisBuffered Saline (TBS) buffer supplementedwith0.05%Tween‐20 (TBST) and 5% non‐fat dry milk, membranes were exposed O/N at 4 °C to the following primary antibodies: KV2.1 at 4 μg/mL (NeuroMab, K89/ 34), CaV1.2 at 1:250 (Alomone Labs, acc-003), CDK5 at 1:100 (Santa Cruz Biotechnology, Cat #sc-6247), p35 at 1:100 (Cell Signaling Technology, Cat #C64B10), p39 at 1:100 (Santa Cruz Biotechnology, Cat #sc-365781) or GAPDH at 1:1000 (Proteintech, Cat #10494-I-AP).

    Article Title: The voltage-dependent potassium channel subunit Kv2.1 regulates insulin secretion from rodent and human islets independently of its electrical function.
    Article Snippet: The Kv2.1 antibody (NeuroMab) used in this experiment recognises a C-terminal epitope (amino acids 837–853) that does not overlap with the C1 domain. h Capacitance responses in INS-1 832/13 cells producing GFP or a YFP-tagged Kv2.1-C1 fragment (representative of 6–8 experiments).

    Article Title: The voltage-dependent potassium channel subunit Kv2.1 regulates insulin secretion from rodent and human islets independently of its electrical function.
    Article Snippet: The Kv2.1 antibody (NeuroMab) used in this experiment recognises a C-terminal epitope (amino acids 837–853) that does not overlap with the C1 domain. c Glucose-stimulated insulin secretion from human islets, shown as the percentage of insulin content, is blunted by dissociation of Kv2.1–syntaxin 1A binding with Ad-GFP-Kv2.1-C1 (black bars) compared with Ad-GFP alone (white bars).

    Article Title: Muscarinic-Dependent miR-182 and QR2 Expression Regulation in the Anterior Insula Enables Novel Taste Learning
    Article Snippet: Samples were transferred to PVDF membranes, washed three times in TBST, blocked for 2 h in blocking buffer (Bio-Rad), and exposed to a mouse monoclonal KV2.1 antibody (1:500; UC Davis/NIH NeuroMab) overnight.

    Article Title: Potassium channels in the central nervous system of the snail, Helix pomatia: localization and functional characterization.
    Article Snippet: In preabsorption control experiments, the diluted antibodies were incubated with their appropriate antigen (1 lg peptide/1 lg antibody; Kv3.4, Kv4.3, Alomone Labs; Kv2.1, Neuromab Antibodies Inc.) overnight at 4 C prior to the treatment of the cryostat sections.

    Saline:

    Article Title: NPC1-dependent alterations in K V 2.1-Ca V 1.2 nanodomains drive neuronal death in models of Niemann-Pick Type C disease.
    Article Snippet: After 30min incubation at RT in TrisBuffered Saline (TBS) buffer supplementedwith0.05%Tween‐20 (TBST) and 5% non‐fat dry milk, membranes were exposed O/N at 4 °C to the following primary antibodies: KV2.1 at 4 μg/mL (NeuroMab, K89/ 34), CaV1.2 at 1:250 (Alomone Labs, acc-003), CDK5 at 1:100 (Santa Cruz Biotechnology, Cat #sc-6247), p35 at 1:100 (Cell Signaling Technology, Cat #C64B10), p39 at 1:100 (Santa Cruz Biotechnology, Cat #sc-365781) or GAPDH at 1:1000 (Proteintech, Cat #10494-I-AP).

    Article Title: The voltage-dependent potassium channel subunit Kv2.1 regulates insulin secretion from rodent and human islets independently of its electrical function.
    Article Snippet: The Kv2.1 antibody (NeuroMab) used in this experiment recognises a C-terminal epitope (amino acids 837–853) that does not overlap with the C1 domain. h Capacitance responses in INS-1 832/13 cells producing GFP or a YFP-tagged Kv2.1-C1 fragment (representative of 6–8 experiments).

    Article Title: The voltage-dependent potassium channel subunit Kv2.1 regulates insulin secretion from rodent and human islets independently of its electrical function.
    Article Snippet: The Kv2.1 antibody (NeuroMab) used in this experiment recognises a C-terminal epitope (amino acids 837–853) that does not overlap with the C1 domain. c Glucose-stimulated insulin secretion from human islets, shown as the percentage of insulin content, is blunted by dissociation of Kv2.1–syntaxin 1A binding with Ad-GFP-Kv2.1-C1 (black bars) compared with Ad-GFP alone (white bars).

    Article Title: Muscarinic-Dependent miR-182 and QR2 Expression Regulation in the Anterior Insula Enables Novel Taste Learning
    Article Snippet: Samples were transferred to PVDF membranes, washed three times in TBST, blocked for 2 h in blocking buffer (Bio-Rad), and exposed to a mouse monoclonal KV2.1 antibody (1:500; UC Davis/NIH NeuroMab) overnight.

    Article Title: Potassium channels in the central nervous system of the snail, Helix pomatia: localization and functional characterization.
    Article Snippet: In preabsorption control experiments, the diluted antibodies were incubated with their appropriate antigen (1 lg peptide/1 lg antibody; Kv3.4, Kv4.3, Alomone Labs; Kv2.1, Neuromab Antibodies Inc.) overnight at 4 C prior to the treatment of the cryostat sections.

    Blocking Assay:

    Article Title: NPC1-dependent alterations in K V 2.1-Ca V 1.2 nanodomains drive neuronal death in models of Niemann-Pick Type C disease.
    Article Snippet: After 30min incubation at RT in TrisBuffered Saline (TBS) buffer supplementedwith0.05%Tween‐20 (TBST) and 5% non‐fat dry milk, membranes were exposed O/N at 4 °C to the following primary antibodies: KV2.1 at 4 μg/mL (NeuroMab, K89/ 34), CaV1.2 at 1:250 (Alomone Labs, acc-003), CDK5 at 1:100 (Santa Cruz Biotechnology, Cat #sc-6247), p35 at 1:100 (Cell Signaling Technology, Cat #C64B10), p39 at 1:100 (Santa Cruz Biotechnology, Cat #sc-365781) or GAPDH at 1:1000 (Proteintech, Cat #10494-I-AP).

    Article Title: The voltage-dependent potassium channel subunit Kv2.1 regulates insulin secretion from rodent and human islets independently of its electrical function.
    Article Snippet: The Kv2.1 antibody (NeuroMab) used in this experiment recognises a C-terminal epitope (amino acids 837–853) that does not overlap with the C1 domain. h Capacitance responses in INS-1 832/13 cells producing GFP or a YFP-tagged Kv2.1-C1 fragment (representative of 6–8 experiments).

    Article Title: The voltage-dependent potassium channel subunit Kv2.1 regulates insulin secretion from rodent and human islets independently of its electrical function.
    Article Snippet: The Kv2.1 antibody (NeuroMab) used in this experiment recognises a C-terminal epitope (amino acids 837–853) that does not overlap with the C1 domain. c Glucose-stimulated insulin secretion from human islets, shown as the percentage of insulin content, is blunted by dissociation of Kv2.1–syntaxin 1A binding with Ad-GFP-Kv2.1-C1 (black bars) compared with Ad-GFP alone (white bars).

    Article Title: Muscarinic-Dependent miR-182 and QR2 Expression Regulation in the Anterior Insula Enables Novel Taste Learning
    Article Snippet: Samples were transferred to PVDF membranes, washed three times in TBST, blocked for 2 h in blocking buffer (Bio-Rad), and exposed to a mouse monoclonal KV2.1 antibody (1:500; UC Davis/NIH NeuroMab) overnight.

    Article Title: Potassium channels in the central nervous system of the snail, Helix pomatia: localization and functional characterization.
    Article Snippet: In preabsorption control experiments, the diluted antibodies were incubated with their appropriate antigen (1 lg peptide/1 lg antibody; Kv3.4, Kv4.3, Alomone Labs; Kv2.1, Neuromab Antibodies Inc.) overnight at 4 C prior to the treatment of the cryostat sections.

    Immunolabeling:

    Article Title: NPC1-dependent alterations in K V 2.1-Ca V 1.2 nanodomains drive neuronal death in models of Niemann-Pick Type C disease.
    Article Snippet: After 30min incubation at RT in TrisBuffered Saline (TBS) buffer supplementedwith0.05%Tween‐20 (TBST) and 5% non‐fat dry milk, membranes were exposed O/N at 4 °C to the following primary antibodies: KV2.1 at 4 μg/mL (NeuroMab, K89/ 34), CaV1.2 at 1:250 (Alomone Labs, acc-003), CDK5 at 1:100 (Santa Cruz Biotechnology, Cat #sc-6247), p35 at 1:100 (Cell Signaling Technology, Cat #C64B10), p39 at 1:100 (Santa Cruz Biotechnology, Cat #sc-365781) or GAPDH at 1:1000 (Proteintech, Cat #10494-I-AP).

    Article Title: The voltage-dependent potassium channel subunit Kv2.1 regulates insulin secretion from rodent and human islets independently of its electrical function.
    Article Snippet: The Kv2.1 antibody (NeuroMab) used in this experiment recognises a C-terminal epitope (amino acids 837–853) that does not overlap with the C1 domain. h Capacitance responses in INS-1 832/13 cells producing GFP or a YFP-tagged Kv2.1-C1 fragment (representative of 6–8 experiments).

    Article Title: The voltage-dependent potassium channel subunit Kv2.1 regulates insulin secretion from rodent and human islets independently of its electrical function.
    Article Snippet: The Kv2.1 antibody (NeuroMab) used in this experiment recognises a C-terminal epitope (amino acids 837–853) that does not overlap with the C1 domain. c Glucose-stimulated insulin secretion from human islets, shown as the percentage of insulin content, is blunted by dissociation of Kv2.1–syntaxin 1A binding with Ad-GFP-Kv2.1-C1 (black bars) compared with Ad-GFP alone (white bars).

    Article Title: Muscarinic-Dependent miR-182 and QR2 Expression Regulation in the Anterior Insula Enables Novel Taste Learning
    Article Snippet: Samples were transferred to PVDF membranes, washed three times in TBST, blocked for 2 h in blocking buffer (Bio-Rad), and exposed to a mouse monoclonal KV2.1 antibody (1:500; UC Davis/NIH NeuroMab) overnight.

    Article Title: Potassium channels in the central nervous system of the snail, Helix pomatia: localization and functional characterization.
    Article Snippet: In preabsorption control experiments, the diluted antibodies were incubated with their appropriate antigen (1 lg peptide/1 lg antibody; Kv3.4, Kv4.3, Alomone Labs; Kv2.1, Neuromab Antibodies Inc.) overnight at 4 C prior to the treatment of the cryostat sections.

    Control:

    Article Title: NPC1-dependent alterations in K V 2.1-Ca V 1.2 nanodomains drive neuronal death in models of Niemann-Pick Type C disease.
    Article Snippet: After 30min incubation at RT in TrisBuffered Saline (TBS) buffer supplementedwith0.05%Tween‐20 (TBST) and 5% non‐fat dry milk, membranes were exposed O/N at 4 °C to the following primary antibodies: KV2.1 at 4 μg/mL (NeuroMab, K89/ 34), CaV1.2 at 1:250 (Alomone Labs, acc-003), CDK5 at 1:100 (Santa Cruz Biotechnology, Cat #sc-6247), p35 at 1:100 (Cell Signaling Technology, Cat #C64B10), p39 at 1:100 (Santa Cruz Biotechnology, Cat #sc-365781) or GAPDH at 1:1000 (Proteintech, Cat #10494-I-AP).

    Article Title: The voltage-dependent potassium channel subunit Kv2.1 regulates insulin secretion from rodent and human islets independently of its electrical function.
    Article Snippet: The Kv2.1 antibody (NeuroMab) used in this experiment recognises a C-terminal epitope (amino acids 837–853) that does not overlap with the C1 domain. h Capacitance responses in INS-1 832/13 cells producing GFP or a YFP-tagged Kv2.1-C1 fragment (representative of 6–8 experiments).

    Article Title: The voltage-dependent potassium channel subunit Kv2.1 regulates insulin secretion from rodent and human islets independently of its electrical function.
    Article Snippet: The Kv2.1 antibody (NeuroMab) used in this experiment recognises a C-terminal epitope (amino acids 837–853) that does not overlap with the C1 domain. c Glucose-stimulated insulin secretion from human islets, shown as the percentage of insulin content, is blunted by dissociation of Kv2.1–syntaxin 1A binding with Ad-GFP-Kv2.1-C1 (black bars) compared with Ad-GFP alone (white bars).

    Article Title: Muscarinic-Dependent miR-182 and QR2 Expression Regulation in the Anterior Insula Enables Novel Taste Learning
    Article Snippet: Samples were transferred to PVDF membranes, washed three times in TBST, blocked for 2 h in blocking buffer (Bio-Rad), and exposed to a mouse monoclonal KV2.1 antibody (1:500; UC Davis/NIH NeuroMab) overnight.

    Article Title: Potassium channels in the central nervous system of the snail, Helix pomatia: localization and functional characterization.
    Article Snippet: In preabsorption control experiments, the diluted antibodies were incubated with their appropriate antigen (1 lg peptide/1 lg antibody; Kv3.4, Kv4.3, Alomone Labs; Kv2.1, Neuromab Antibodies Inc.) overnight at 4 C prior to the treatment of the cryostat sections.

    Binding Assay:

    Article Title: NPC1-dependent alterations in K V 2.1-Ca V 1.2 nanodomains drive neuronal death in models of Niemann-Pick Type C disease.
    Article Snippet: After 30min incubation at RT in TrisBuffered Saline (TBS) buffer supplementedwith0.05%Tween‐20 (TBST) and 5% non‐fat dry milk, membranes were exposed O/N at 4 °C to the following primary antibodies: KV2.1 at 4 μg/mL (NeuroMab, K89/ 34), CaV1.2 at 1:250 (Alomone Labs, acc-003), CDK5 at 1:100 (Santa Cruz Biotechnology, Cat #sc-6247), p35 at 1:100 (Cell Signaling Technology, Cat #C64B10), p39 at 1:100 (Santa Cruz Biotechnology, Cat #sc-365781) or GAPDH at 1:1000 (Proteintech, Cat #10494-I-AP).

    Article Title: The voltage-dependent potassium channel subunit Kv2.1 regulates insulin secretion from rodent and human islets independently of its electrical function.
    Article Snippet: The Kv2.1 antibody (NeuroMab) used in this experiment recognises a C-terminal epitope (amino acids 837–853) that does not overlap with the C1 domain. h Capacitance responses in INS-1 832/13 cells producing GFP or a YFP-tagged Kv2.1-C1 fragment (representative of 6–8 experiments).

    Article Title: The voltage-dependent potassium channel subunit Kv2.1 regulates insulin secretion from rodent and human islets independently of its electrical function.
    Article Snippet: The Kv2.1 antibody (NeuroMab) used in this experiment recognises a C-terminal epitope (amino acids 837–853) that does not overlap with the C1 domain. c Glucose-stimulated insulin secretion from human islets, shown as the percentage of insulin content, is blunted by dissociation of Kv2.1–syntaxin 1A binding with Ad-GFP-Kv2.1-C1 (black bars) compared with Ad-GFP alone (white bars).

    Article Title: Muscarinic-Dependent miR-182 and QR2 Expression Regulation in the Anterior Insula Enables Novel Taste Learning
    Article Snippet: Samples were transferred to PVDF membranes, washed three times in TBST, blocked for 2 h in blocking buffer (Bio-Rad), and exposed to a mouse monoclonal KV2.1 antibody (1:500; UC Davis/NIH NeuroMab) overnight.

    Article Title: Potassium channels in the central nervous system of the snail, Helix pomatia: localization and functional characterization.
    Article Snippet: In preabsorption control experiments, the diluted antibodies were incubated with their appropriate antigen (1 lg peptide/1 lg antibody; Kv3.4, Kv4.3, Alomone Labs; Kv2.1, Neuromab Antibodies Inc.) overnight at 4 C prior to the treatment of the cryostat sections.



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