Antibody data
- Antibody Data
- Antigen structure
- References [8]
- Comments [0]
- Validations [0]
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Validation data
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- Product number
- 13749-1-AP - Provider product page

- Provider
- Proteintech Group
- Proper citation
- Proteintech Cat#13749-1-AP, RRID:AB_2132428
- Product name
- KLF15 antibody
- Antibody type
- Polyclonal
- Description
- KD/KO validated KLF15 antibody (Cat. #13749-1-AP) is a rabbit polyclonal antibody that shows reactivity with human, mouse, rat and has been validated for the following applications: ELISA.
- Reactivity
- Human, Mouse, Rat
- Host
- Rabbit
- Conjugate
- Unconjugated
- Isotype
- IgG
- Vial size
- 20ul, 150ul
Submitted references Sildenafil suppresses the activation of hypertrophic scar fibroblasts by promoting the KLF15-mediated inhibition of LOXL1 transcription.
Targeting WWP1 ameliorates osteoarthritis by suppressing KLF15 ubiquitination to restore mtDNA and mitochondrial function.
Multi-omics insights into the pathogenesis of diabetic cardiomyopathy: epigenetic and metabolic profiles.
Renal Denervation Improves Myocardial Mitochondrial Dysfunction and Myocardial Fibrosis by Inhibiting the NE/KLF15/renalase Pathway.
Gc inhibition preserves insulin sensitivity and reduces body weight without loss of muscle mass.
A Remodeled Hsp90 Molecular Chaperone Ensemble with the Novel Cochaperone Aarsd1 Is Required for Muscle Differentiation.
KLF15 is a molecular link between endoplasmic reticulum stress and insulin resistance.
Crosstalk between glucocorticoid receptor and nutritional sensor mTOR in skeletal muscle.
Li C, Xu Y, Cao B, Fan Y, Bin J, Wang X, Zeng C
The Korean journal of physiology & pharmacology : official journal of the Korean Physiological Society and the Korean Society of Pharmacology 2026 Mar 1;30(2):111-124
The Korean journal of physiology & pharmacology : official journal of the Korean Physiological Society and the Korean Society of Pharmacology 2026 Mar 1;30(2):111-124
Targeting WWP1 ameliorates osteoarthritis by suppressing KLF15 ubiquitination to restore mtDNA and mitochondrial function.
Li Z, Lan W, Luo Y, Liu P, Li X, Li H
Molecular genetics and genomics : MGG 2026 Apr 24;301(1)
Molecular genetics and genomics : MGG 2026 Apr 24;301(1)
Multi-omics insights into the pathogenesis of diabetic cardiomyopathy: epigenetic and metabolic profiles.
Zhou L, Mei S, Ma X, Wuyun Q, Cai Z, Chen C, Ding H, Yan J
Epigenomics 2025 Jan;17(1):33-48
Epigenomics 2025 Jan;17(1):33-48
Renal Denervation Improves Myocardial Mitochondrial Dysfunction and Myocardial Fibrosis by Inhibiting the NE/KLF15/renalase Pathway.
Chen Y, Fu R, Huang M, Liu T, Zeng L, Li X
Molecular neurobiology 2025 Dec;62(12):16001-16014
Molecular neurobiology 2025 Dec;62(12):16001-16014
Gc inhibition preserves insulin sensitivity and reduces body weight without loss of muscle mass.
Gill R, Kuo T
JCI insight 2025 Dec 8;10(23)
JCI insight 2025 Dec 8;10(23)
A Remodeled Hsp90 Molecular Chaperone Ensemble with the Novel Cochaperone Aarsd1 Is Required for Muscle Differentiation.
EcheverrÃa PC, Briand PA, Picard D
Molecular and cellular biology 2016 Apr;36(8):1310-21
Molecular and cellular biology 2016 Apr;36(8):1310-21
KLF15 is a molecular link between endoplasmic reticulum stress and insulin resistance.
Jung DY, Chalasani U, Pan N, Friedline RH, Prosdocimo DA, Nam M, Azuma Y, Maganti R, Yu K, Velagapudi A, O'Sullivan-Murphy B, Sartoretto JL, Jain MK, Cooper MP, Urano F, Kim JK, Gray S
PloS one 2013;8(10):e77851
PloS one 2013;8(10):e77851
Crosstalk between glucocorticoid receptor and nutritional sensor mTOR in skeletal muscle.
Shimizu N, Yoshikawa N, Ito N, Maruyama T, Suzuki Y, Takeda S, Nakae J, Tagata Y, Nishitani S, Takehana K, Sano M, Fukuda K, Suematsu M, Morimoto C, Tanaka H
Cell metabolism 2011 Feb 2;13(2):170-82
Cell metabolism 2011 Feb 2;13(2):170-82
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