Genetic Variants in HSP70 Family and BAG Co-Chaperone Genes: Associations with Coronary Artery Disease Risk and Potential Regulatory Effects.
O, P., K, K., YL, O., & O, B. (2026). Genetic Variants in HSP70 Family and BAG Co-Chaperone Genes: Associations with Coronary Artery Disease Risk and Potential Regulatory Effects.. International journal of molecular sciences. https://doi.org/10.3390/ijms27167299
O P, K K, YL O, O B. Genetic Variants in HSP70 Family and BAG Co-Chaperone Genes: Associations with Coronary Artery Disease Risk and Potential Regulatory Effects.. International journal of molecular sciences. 2026; doi: 10.3390/ijms27167299
O P, K K, YL O, et al. Genetic Variants in HSP70 Family and BAG Co-Chaperone Genes: Associations with Coronary Artery Disease Risk and Potential Regulatory Effects.[J]. International journal of molecular sciences. 2026. DOI: 10.3390/ijms27167299.
@article{o2026,
author = {Polshvedkina O and Kobzeva K and Orlov YL and Bushueva O},
title = {Genetic Variants in HSP70 Family and BAG Co-Chaperone Genes: Associations with Coronary Artery Disease Risk and Potential Regulatory Effects.},
journal = {International journal of molecular sciences},
year = {2026},
doi = {10.3390/ijms27167299},
note = {PMID: 42653304},
}
TY - JOUR AU - Polshvedkina O AU - Kobzeva K AU - Orlov YL AU - Bushueva O TI - Genetic Variants in HSP70 Family and BAG Co-Chaperone Genes: Associations with Coronary Artery Disease Risk and Potential Regulatory Effects. T2 - International journal of molecular sciences PY - 2026 DO - 10.3390/ijms27167299 AN - PMID:42653304 ER -
Heat shock proteins of the HSP70 family and their BAG co-chaperones regulate responses to oxidative stress, inflammation, apoptosis, and ischemia, all central to coronary artery disease (CAD) pathogenesis. The contribution of genetic variants within HSP70-family and BAG co-chaperone genes to CAD susceptibility remains unclear. Thus, we sought to evaluate associations of HSP70- and BAG-related SNPs with CAD risk and to characterize their potential regulatory effects using comprehensive bioinformatic analyses. A case-control cohort of 834 CAD patients and 1328 controls of Russian ethnicity was genotyped for 13 SNPs. Associations with CAD susceptibility and traits were tested using log-additive regression with adaptive permutation. Loci underwent functional annotation. The C allele of BAG1 rs706121 was associated with increased CAD risk overall (OR = 1.24, pperm = 0.019), in males (OR = 1.39, pperm = 0.002), and in smokers (OR = 1.39, pperm = 0.020). BAG3 rs196329 was associated with lower risk in males (A allele: OR = 0.82, pperm = 0.040), whereas HSPA6 rs753856 was associated with reduced risk in physically active individuals (G allele: OR = 0.61, pperm = 0.008). Additional associations involved clinical or biochemical traits. Functional annotation identified potential regulatory effects, including eQTL associations, overlap with histone marks, and allele-dependent changes in transcription factor binding. HSP70 and BAG variants may contribute to CAD susceptibility and support sex- and lifestyle-informed risk assessment.