Antibody data
- Antibody Data
- Antigen structure
- References [8]
- Comments [0]
- Validations [0]
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- Product number
- 67052-1-Ig - Provider product page

- Provider
- Proteintech Group
- Product name
- SMAD5 antibody
- Antibody type
- Monoclonal
- Description
- SMAD5 antibody (Cat. #67052-1-Ig) is a mouse monoclonal antibody that shows reactivity with Human, mouse, rat and has been validated for the following applications: IHC, WB,ELISA.
- Reactivity
- Human, Mouse, Rat
- Host
- Mouse
- Conjugate
- Unconjugated
- Isotype
- IgG
- Antibody clone number
- 1A6A4
- Vial size
- 20ul, 150ul
Submitted references MiR-145-5p arrests the cell cycle by modulating SMAD5/cyclin D1 to inhibit gastric cancer progression.
Cancer associated fibroblasts-derived lactate induces oxaliplatin treatment resistance by promoting cancer stemness via ANTXR1 lactylation in colorectal cancer.
UBE2C orchestrates bone formation through stabilization of SMAD1/5.
TLR4/7-mediated host-defense responses of gingival epithelial cells.
Exosomes Derived from SW480-Resistant Colon Cancer Cells Are Promote Angiogenesis via BMP-2/Smad5 Signaling Pathway.
miR-122-5p targets GREM2 to protect against glucocorticoid-induced endothelial damage through the BMP signaling pathway.
EGR1 plays an important role in BMP9-mediated osteoblast differentiation by promoting SMAD1/5 phosphorylation.
HIF-1α plays an essential role in BMP9-mediated osteoblast differentiation through the induction of a glycolytic enzyme, PDK1.
Wang L, Guo J, Lv C, Kong L, Cui J, Wang Z, Guo Y, Jia R, Guan T, Yu B, Li F
Frontiers in cell and developmental biology 2025;13:1619359
Frontiers in cell and developmental biology 2025;13:1619359
Cancer associated fibroblasts-derived lactate induces oxaliplatin treatment resistance by promoting cancer stemness via ANTXR1 lactylation in colorectal cancer.
He J, Li W, Wang S, Lan J, Hong X, Liao L, Kang D, Wang W, Wang R, Zhang W, Yu L, Ou Q, Fang Y, Wu X, Lin J, Ding P, Zhou C, Pan Z, Peng J
Cancer letters 2025 Oct 28;631:217917
Cancer letters 2025 Oct 28;631:217917
UBE2C orchestrates bone formation through stabilization of SMAD1/5.
Zhang H, Du Y, Lu D, Wang X, Li Y, Qing J, Zhang Y, Liu H, Lv L, Zhang X, Liu Y, Zhou Y, Zhang P
Bone 2024 Oct;187:117175
Bone 2024 Oct;187:117175
TLR4/7-mediated host-defense responses of gingival epithelial cells.
Chiba N, Tada R, Ohnishi T, Matsuguchi T
Journal of cellular biochemistry 2024 Jul;125(7):e30576
Journal of cellular biochemistry 2024 Jul;125(7):e30576
Exosomes Derived from SW480-Resistant Colon Cancer Cells Are Promote Angiogenesis via BMP-2/Smad5 Signaling Pathway.
Yang S, Yao L, Wang X, Sun H, Du C, Song C, Fu J, Wu Y, Huang H, Wang C, Wang Y, Xie Y
Applied bionics and biomechanics 2022;2022:6124374
Applied bionics and biomechanics 2022;2022:6124374
miR-122-5p targets GREM2 to protect against glucocorticoid-induced endothelial damage through the BMP signaling pathway.
Huang X, Jie S, Li W, Li H, Ni J, Liu C
Molecular and cellular endocrinology 2022 Mar 15;544:111541
Molecular and cellular endocrinology 2022 Mar 15;544:111541
EGR1 plays an important role in BMP9-mediated osteoblast differentiation by promoting SMAD1/5 phosphorylation.
Chiba N, Noguchi Y, Seong CH, Ohnishi T, Matsuguchi T
FEBS letters 2022 Jul;596(13):1720-1732
FEBS letters 2022 Jul;596(13):1720-1732
HIF-1α plays an essential role in BMP9-mediated osteoblast differentiation through the induction of a glycolytic enzyme, PDK1.
Amir MS, Chiba N, Seong CH, Kusuyama J, Eiraku N, Ohnishi T, Nakamura N, Matsuguchi T
Journal of cellular physiology 2022 Apr;237(4):2183-2197
Journal of cellular physiology 2022 Apr;237(4):2183-2197
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