wnt5a recombinant protein (MedChemExpress)
Structured Review

Wnt5a Recombinant Protein, supplied by MedChemExpress, used in various techniques. Bioz Stars score: 93/100, based on 3 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/wnt5a+recombinant+protein/bio_rxiv__64898__2026__03__23__713637-193-37-41?v=MedChemExpress
Average 93 stars, based on 3 article reviews
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1) Product Images from "Wnt/β-catenin signaling restrains developmental beige adipocyte thermogenesis and its inhibition imprints long-term energy expenditure"
Article Title: Wnt/β-catenin signaling restrains developmental beige adipocyte thermogenesis and its inhibition imprints long-term energy expenditure
Journal: bioRxiv
doi: 10.64898/2026.03.23.713637
Figure Legend Snippet: a RNA-seq was performed in iWAT of 4-week-old Adipoq Cre ; Ctnnb1 flox/flox and control mice ( n = 3), with a threshold of |FC| > 1.5 and adjusted P-value < 0.05. KEGG enrichment analysis of genes upregulated in Adipoq Cre ; Ctnnb1 flox/flox mice relative to control mice. b mRNA expression of Wnt5a and Fzd5 in iWAT of wild-type male mice at 3, 4, 5, and 8 weeks of age ( n = 3). c Immunoblotting for Wnt5a, pCaMKK2, CaMKK2, pAMPK, AMPK, Atgl, Sirt1, Pgc1α in iWAT of wild-type male mice at 3, 4, 5, and 8 weeks of age ( n = 3). d Wnt5a and Fzd5 expression in iWAT of 4-week-old Adipoq Cre ; Ctnnb1 flox/flox and control mice ( n = 3). e Immunoblotting for Wnt5a, pCaMKII, CaMKII, pCaMKK2, CaMKK2, pAMPK, AMPK in iWAT of 4-week-old Adipoq Cre ; Ctnnb1 flox/flox and control mice ( n = 3). f mRNA expression of triglyceride lipolysis genes in iWAT of 4-week-old Adipoq Cre ; Ctnnb1 flox/flox and control mice ( n = 5–6). g mRNA expression of fatty acid β-oxidation genes in iWAT of 4-week-old Adipoq Cre ; Ctnnb1 flox/flox and control mice ( n = 6). h Immunoblotting for Cpt1, Atgl in iWAT of 4-week-old Adipoq Cre ; Ctnnb1 flox/flox and control mice ( n = 3). i Immunoblotting for Sirt1, Pgc1α, Pparγ, Pparɑ in iWAT of 4-week-old Adipoq Cre ; Ctnnb1 flox/flox and control mice ( n = 3). j mRNA expression of Pparγ in iWAT of 4-week-old Adipoq Cre ; Ctnnb1 flox/flox and control mice ( n = 7). k Schematic summary of β-catenin suppression results in activation of Wnt/Ca 2+ -AMPK axis, highlighting non-canonical pathways involved in the thermogenic response. The levels of mRNA expression are normalized to that of 36B4 . Data are the mean ± s.e.m. Statistical analyses used were one-way ANOVA with Tukey’s correction for multiple comparisons or unpaired two-tailed t -tests.
Techniques Used: RNA Sequencing, Control, Expressing, Western Blot, Activation Assay, Two Tailed Test
Figure Legend Snippet: a Experimental strategy to suppress β-catenin in vitro by employing adipocytes differentiated from SVFs of 4-week-old wild-type mouse iWAT. b Microscopy images of adipocytes following treatment with vehicle (0.1% DMSO), MSAB, Rosiglitazone, or MSAB plus Rosiglitazone ( n = 3 biological replicates). Scale bar, 200 μm. Nile Red and DAPI were used to stain lipid droplets and nuclei, respectively ( n = 3 biological replicates). Scale bar, 20 μm. The right panel displays the statistical analysis of Nile Red-labeled lipid droplets number per cell ( n = 32 cells). c mRNA expression of thermogenic genes in ( b ) ( n = 3 biological replicates). d Immunoblotting for Wnt5a/Ca²⁺-AMPK-PPAR axis and thermogenic protein in ( b ) ( n = 3 biological replicates). e Experimental strategy to suppress β-catenin while inhibiting the Ca²⁺ pathway in vitro by employing adipocytes differentiated from the SVFs of 4-week-old wild-type mouse iWAT. f Microscopy images of Rosiglitazone-differentiated adipocytes treated with vehicle (0.1% DMSO), MSAB, or MSAB plus BAPTA-AM ( n = 3 biological replicates). Scale bar, 200 μm. Nile Red and DAPI were used to stain lipid droplets and nuclei, respectively ( n = 3 biological replicates). Scale bar, 20 μm. The right panel displays the statistical analysis of Nile Red-labeled lipid droplets number per cell ( n = 32 cells). g mRNA expression of thermogenic genes in ( f ) ( n = 3 biological replicates). h Immunoblotting for Wnt5a/Ca²⁺-AMPK-PPAR axis and thermogenic protein in ( f ) ( n = 3 biological replicates). i OCR plots and measured maximal respiration levels across the three treatment groups (Vehicle, MSAB, MSAB and BAPTA-AM) ( n = 3 cells). The levels of mRNA expression are normalized to that of 36B4 . Data are the mean ± s.e.m. Statistical analyses used were unpaired two-sided Student’s t -tests or two-way ANOVA followed by Tukey’s multiple-comparisons test or one-way ANOVA with Tukey’s correction for multiple comparisons.
Techniques Used: In Vitro, Microscopy, Staining, Labeling, Expressing, Western Blot
Figure Legend Snippet: a Experimental strategy to suppress Wnt5a/Ca²⁺ pathway in vitro by employing adipocytes differentiated from the SVFs of 4-week-old wild-type mouse iWAT. b Microscopy images of adipocytes following treatment with vehicle (0.1% DMSO), Box5, MSAB, or MSAB plus Box5 ( n = 3 biological replicates). Scale bar, 200 μm. Nile Red and DAPI were used to stain lipid droplets and nuclei, respectively ( n = 3 biological replicates). Scale bar, 20 μm. The right panel displays the statistical analysis of Nile Red-labeled lipid droplets number per cell ( n = 32 cells). c mRNA expression of thermogenic genes and downstream genes of Wnt/β-catenin signaling pathway in ( b ) ( n = 3 biological replicates). d Immunoblotting for Wnt5a/Ca²⁺-AMPK-PPAR axis and thermogenic protein in ( b ) ( n = 3 biological replicates). e Experimental strategy to supply exogenous Wnt5a recombinant protein in vitro by employing adipocytes differentiated from the SVFs of 4-week-old wild-type mouse iWAT. f Microscopy images of adipocytes following treatment with vehicle (0.1% DMSO), Wnt5a recombinant protein, MSAB, or MSAB plus Wnt5a recombinant protein ( n = 3 biological replicates). Scale bar, 200 μm. Nile Red and DAPI were used to stain lipid droplets and nuclei, respectively ( n = 3 biological replicates). Scale bar, 20 μm. The right panel displays the statistical analysis of Nile Red-labeled lipid droplets number per cell ( n = 32 cells). g mRNA expression of thermogenic genes and downstream genes of Wnt/β-catenin signaling pathway in ( f ) ( n = 3 biological replicates). h Immunoblotting for Wnt5a/Ca²⁺-AMPK-PPAR axis and thermogenic protein in ( f ) ( n = 3 biological replicates). i OCR plots, measured basal respiration and measured maximal respiration levels in cultured peri-weaning adipocytes across the six treatment groups (Vehicle, Wnt5a recombinant protein, MSAB, MSAB plus Wnt5a recombinant protein, Box5, MSAB plus Box5) ( n = 3 cells). The levels of mRNA expression are normalized to that of 36B4 . Data are the mean ± s.e.m. Statistical analyses used were two-way ANOVA followed by Tukey’s multiple-comparisons test or one-way ANOVA with Tukey’s correction for multiple comparisons.
Techniques Used: In Vitro, Microscopy, Staining, Labeling, Expressing, Western Blot, Recombinant, Cell Culture
Figure Legend Snippet: a Experimental strategy to suppress β-catenin using adipocytes differentiated from human subcutaneous lipoaspirates. b Microscopy images of human subcutaneous adipocytes following treatment with vehicle (0.1% DMSO) and MSAB after maturation ( n = 3 biological replicates). Scale bar, 200 μm. Nile Red and DAPI were used to stain lipid droplets and nuclei, respectively ( n = 3 biological replicates). Scale bar, 30 μm. The right panel displays the statistical analysis of Nile Red-labeled lipid droplets number per cell ( n = 30 cells). c mRNA expression of adipogenic genes in ( b ) ( n = 3 biological replicates). d mRNA expression of thermogenic genes and downstream genes of Wnt/β-catenin signaling pathway in ( b ) ( n = 3 biological replicates). e Immunoblotting for Wnt5a/Ca²⁺-AMPK-PPAR axis, Wnt/β-catenin signaling pathway and thermogenic protein in ( b ) ( n = 3 biological replicates). The levels of mRNA expression are normalized to that of 36B4 . Data are the mean ± s.e.m. Statistical analyses used were unpaired two-sided Student’s t -tests.
Techniques Used: Microscopy, Staining, Labeling, Expressing, Western Blot


![Single-cell RNA sequencing (scRNA-seq) analysis of the dynamically cultured EO and HEO complexes. a. UMAP visualization of 12 samples across four culture conditions: HEOe (HEO + estrogen), HEOp (HEO + estrogen + progesterone + cAMP), EOe (EO + estrogen), EOp (EO + estrogen + progesterone + cAMP). Endometrial epithelial cell clusters were annotated as main Epi (mEpi), ribosome-related Epi (rEpi), proliferative Epi (pEpi), and ciliated Epi (cEpi). Endometrial stromal cell clusters were annotated as main Str (mStr), ribosome-related Str (rStr), proliferative Str (pStr), and a second proliferative Str cluster (pStr2); the endothelial cell clusters included main endothelial cells (mEndo) and ribosome-related endothelial cells (rEndo). b–c. Relative abundance of epithelial (b) and stromal (c) clusters within their respective compartments across groups.]d. Comparison of the percentage of proliferative epithelial cells (pEpi, left panel) and proliferative stromal cells (pStr, right panel) between the dynamically cultured EO and HEO complexes under estrogen culture.e. Validation of enhanced proliferation in HEO complexes by flow cytometry. Significantly higher proportions of EdU + cells in epithelial cells of HEO vs. EO complexes under estrogen culture.f. Ligand-receptor pairs exhibiting significant differences in communication probability between HEOe and EOe complexes. Pathways of biological interest include WNT7A, <t>WNT5A</t> , BMP6 , and LGALS9. Dot size represents the maximum communication probability across compared groups; dot color indicates statistical significance ( P < 0.05). Cluster abbreviations: Epi (endometrial epithelial cells), Str (endometrial stromal cells) and Endo (endothelial cells).g. Circle plot showing the BMP6, LGALS9, WNT7A, WNT5A signaling networks among different cell types in EOe and HEOe complexes.](https://pub-med-central-images-cdn.bioz.com/pub_med_central_ids_ending_with_4465/pmc12444465/pmc12444465__gr7.jpg)