Institute of Biomedical Science, Fudan University, Yi Xue Yuan Road 138, 200032 Shanghai, China.
Genes Cells. 2012 Feb;17(2):122-31. doi: 10.1111/j.1365-2443.2011.01578.x.
Mtf1 has been characterized as a mitochondrial transcription factor and is shown to regulat mitochondrial transcription. Mtf1 has an additional function as a transcription factor for the nuclear gene srk1 in fission yeast. Hsp60 has been linked to a variety of important cellular functions such as apoptosis and the immune response. It functions mainly as a molecular chaperone that assists correct protein folding in the mitochondrion. Epolactaene tertiary butyl ester(ETB) is an inhibitor of human Hsp60 that can inhibit Hsp60 chaperone activity. In this study,we report that in fission yeast, Mtf1 binds to Hsp60 in vivo and in vitro, ETB inhibits the binding of Mtf1 and Hsp60, and inhibits mitochondrial transcription but not nuclear transcription of srk1. We propose that Hsp60 may act as a molecular chaperone that folds mitochondrial Mtf1 into a functional form and that ETB inhibits this Hsp60 chaperone activity by disrupting Mtf1 binding to Hsp60 and thus inhibits mitochondrial transcription in fission yeast.
Mtf1 已被鉴定为一种线粒体转录因子,可调节线粒体转录。Mtf1 还有另一个功能,可作为裂殖酵母中核基因 srk1 的转录因子。Hsp60 与多种重要的细胞功能有关,如细胞凋亡和免疫反应。它主要作为一种分子伴侣发挥作用,协助线粒体中正确的蛋白质折叠。Epolactaene 叔丁酯(ETB)是一种人 Hsp60 的抑制剂,可抑制 Hsp60 伴侣活性。在这项研究中,我们报告在裂殖酵母中,Mtf1 在体内和体外与 Hsp60 结合,ETB 抑制 Mtf1 和 Hsp60 的结合,并抑制线粒体转录,但不抑制 srk1 的核转录。我们提出 Hsp60 可能作为一种分子伴侣,将线粒体 Mtf1 折叠成具有功能的形式,而 ETB 通过破坏 Mtf1 与 Hsp60 的结合来抑制这种 Hsp60 伴侣活性,从而抑制裂殖酵母中的线粒体转录。