Antibody data
- Antibody Data
- Antigen structure
- References [9]
- Comments [0]
- Validations [0]
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- Product number
- 26782-1-AP - Provider product page

- Provider
- Proteintech Group
- Product name
- TMBIM6 antibody
- Antibody type
- Polyclonal
- Description
- TMBIM6 antibody (Cat. #26782-1-AP) is a rabbit polyclonal antibody that shows reactivity with human, mouse and has been validated for the following applications: IHC, IP, WB,ELISA.
- Reactivity
- Human, Mouse
- Host
- Rabbit
- Conjugate
- Unconjugated
- Isotype
- IgG
- Vial size
- 20ul, 150ul
Submitted references Methyltransferase-like 14 (METTL14)-mediated N6-methyladenosine (m6A) Modification of Forkhead Box Protein 1 (FOXP1) Regulates Trophoblast Inflammation and Function via Transmembrane BAX Inhibitor Motif-Containing 6 (TMBIM6).
Transcription factor TCF3 promotes bladder cancer development via TMBIM6-Ca(2+)-dependent ferroptosis.
The role of hsa_circ_0000520 in breast cancer progression: insights into the miR-542-3p/TMBIM6 regulatory axis.
LncRNA SNHG1 acts as a ceRNA for miR-216a-3p to regulate TMBIM6 expression in esophageal squamous cell carcinoma.
13-oxyingenol dodecanoate derivatives induce mitophagy and ferroptosis through targeting TMBIM6 as potential anti-NSCLC agents.
Methyltransferase-like 3 aggravates endoplasmic reticulum stress in preeclampsia by targeting TMBIM6 in YTHDF2-dependent manner.
The ADAM17 sheddase complex regulator iTAP/Frmd8 modulates inflammation and tumor growth.
TMBIM6 promotes diabetic tubular epithelial cell survival and albumin endocytosis by inhibiting the endoplasmic reticulum stress sensor, IRE1α.
Involvement of miR-27a-3p in diabetic nephropathy via affecting renal fibrosis, mitochondrial dysfunction, and endoplasmic reticulum stress.
Liu Y, Liu Y, Zhang X, Zhu X, Liu Y
Journal of biochemical and molecular toxicology 2025 Sep;39(9):e70458
Journal of biochemical and molecular toxicology 2025 Sep;39(9):e70458
Transcription factor TCF3 promotes bladder cancer development via TMBIM6-Ca(2+)-dependent ferroptosis.
Yang WF, Guo WM, Luo QT, Lu J, Tan ZK, Ye YC, Fan G
Cell death discovery 2025 Jul 3;11(1):303
Cell death discovery 2025 Jul 3;11(1):303
The role of hsa_circ_0000520 in breast cancer progression: insights into the miR-542-3p/TMBIM6 regulatory axis.
Wang F, Sun R, Wang B, Qu G
Cancer gene therapy 2025 Dec 18;
Cancer gene therapy 2025 Dec 18;
LncRNA SNHG1 acts as a ceRNA for miR-216a-3p to regulate TMBIM6 expression in esophageal squamous cell carcinoma.
Kong N, Chi Y, Ma H, Luo D
Journal of Cancer 2024;15(10):3128-3139
Journal of Cancer 2024;15(10):3128-3139
13-oxyingenol dodecanoate derivatives induce mitophagy and ferroptosis through targeting TMBIM6 as potential anti-NSCLC agents.
Wang Y, Gu L, Li J, Wang R, Zhuang Y, Li X, Wang X, Zhang J, Liu Q, Wang J, Song SJ
European journal of medicinal chemistry 2024 Apr 15;270:116312
European journal of medicinal chemistry 2024 Apr 15;270:116312
Methyltransferase-like 3 aggravates endoplasmic reticulum stress in preeclampsia by targeting TMBIM6 in YTHDF2-dependent manner.
Chen Y, Liu X, Li L, He X, Zheng F, Zhang Y, Gao H, Jin Z, Wu D, Wang Q, Tao H, Zhao Y, Liu W, Zou L
Molecular medicine (Cambridge, Mass.) 2023 Feb 6;29(1):19
Molecular medicine (Cambridge, Mass.) 2023 Feb 6;29(1):19
The ADAM17 sheddase complex regulator iTAP/Frmd8 modulates inflammation and tumor growth.
Badenes M, Burbridge E, Oikonomidi I, Amin A, de Carvalho É, Kosack L, Mariano C, Domingos P, Faísca P, Adrain C
Life science alliance 2023 Apr;6(4)
Life science alliance 2023 Apr;6(4)
TMBIM6 promotes diabetic tubular epithelial cell survival and albumin endocytosis by inhibiting the endoplasmic reticulum stress sensor, IRE1α.
Xie H, Shi Y, Zhou Y, Liu H
Molecular biology reports 2022 Oct;49(10):9181-9194
Molecular biology reports 2022 Oct;49(10):9181-9194
Involvement of miR-27a-3p in diabetic nephropathy via affecting renal fibrosis, mitochondrial dysfunction, and endoplasmic reticulum stress.
Wu L, Wang Q, Guo F, Ma X, Wang J, Zhao Y, Yan Y, Qin G
Journal of cellular physiology 2021 Feb;236(2):1454-1468
Journal of cellular physiology 2021 Feb;236(2):1454-1468
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