| Literature DB >> 35053319 |
Yasuko Tokunaga1, Ken-Ichiro Otsuyama2, Naoki Hayashida1.
Abstract
Cell division and cell cycle mechanism has been studied for 70 years. This research has revealed that the cell cycle is regulated by many factors, including cyclins and cyclin-dependent kinases (CDKs). Heat shock transcription factors (HSFs) have been noted as critical proteins for cell survival against various stresses; however, recent studies suggest that HSFs also have important roles in cell cycle regulation-independent cell-protective functions. During cell cycle progression, HSF1, and HSF2 bind to condensed chromatin to provide immediate precise gene expression after cell division. This review focuses on the function of these HSFs in cell cycle progression, cell cycle arrest, gene bookmarking, mitosis and meiosis.Entities:
Keywords: APC/C complex; HSF1; HSF2; cell cycle; cell cycle arrest
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Year: 2022 PMID: 35053319 PMCID: PMC8773920 DOI: 10.3390/cells11020203
Source DB: PubMed Journal: Cells ISSN: 2073-4409 Impact factor: 6.600
Figure 1Structure of human HSF1 (hHSF1, (A)) and human HSF2 (hHSF2, (B)). hHSF1 and hHSF2 have similar domain structures, but several differences exist. R71 and R63 are required for DNA binding in hHSF1 and hHSF2, respectively. The regulatory domain suppresses trimerization of both HSFs and inhibits transcriptional activation. Trimerization is required for the activation of HSFs. DBD, DNA-binding domain; HR-A/B, hydrophobic heptad repeats A and B; HR-C, C-terminal hydrophobic heptad repeat.
Figure 2HeLa cell proliferation is inhibited by constitutive active HSF1 (caHSF1). (A) caHSF1 expression dramatically inhibits cell proliferation (left). In contrast, DNA binding activity lacking mutant HSF1 (RgHSF1) expression does not affect cell proliferation (right). (B) Change of cell proportion in G1, S, and G2/M phases by the induction of caHSF1 expression. G1 proportion increases and G2/M proportion decreases. (C) mRNA expression of p16 and p21 increases by the induction of caHSF1 expression.