School of Biological Sciences, National Institute of Science Education and Research, HBNI, Khordha, Jatni, Odisha, 752050, India; Homi Bhabha National Institute, Training School Complex, Anushakti Nagar, Mumbai, 400094, India.
School of Biological Sciences, National Institute of Science Education and Research, HBNI, Khordha, Jatni, Odisha, 752050, India; Homi Bhabha National Institute, Training School Complex, Anushakti Nagar, Mumbai, 400094, India.
Biochem Biophys Res Commun. 2022 Jun 30;611:172-178. doi: 10.1016/j.bbrc.2022.04.066. Epub 2022 Apr 17.
The importance of TRPV4 in physiology and disease has been reported by several groups. Recently we have reported that TRPV4 localizes in the mitochondria in different cellular systems, regulates mitochondrial metabolism and electron transport chain functions. Here, we show that TRPV4 colocalizes with Cytochrome C (Cyt C), both in resting as well as in activated conditions. Amino acid region 592-630 of TRPV4 (termed as Fr592-630) that also covers TM4-Loop-TM5 region (which is also a hotspot of several pathogenic mutations) interacts with Cyt C, in a Ca-sensitive manner. This interaction is also variable and sensitive to other divalent and trivalent cations (i.e., Cu, Mn, Ni, Zn, Fe). Key residues of TRPV4 involved in these interactions remain conserved throughout the vertebrate evolution. Accordingly, this interaction is variable in the case of different pathogenic mutations (R616Q, F617L, L618P, V620I). Our data suggest that the TRPV4-Cyt C complex differs due to different mutations and is sensitive to the presence of different metal ions. We propose that TRPV4-Cyt C complex formation is important for physiological functions and relevant for TRPV4-induced channelopathies.
已有多个研究小组报道 TRPV4 在生理学和疾病中的重要性。最近,我们报告称 TRPV4 在不同的细胞系统中定位于线粒体,调节线粒体代谢和电子传递链功能。在这里,我们显示 TRPV4 与细胞色素 C(Cyt C)在静止和激活状态下都共定位。TRPV4 的氨基酸区域 592-630(称为 Fr592-630)也覆盖 TM4-环-TM5 区域(也是几个致病突变的热点),以 Ca2+敏感的方式与 Cyt C 相互作用。这种相互作用也是可变的,并且对其他二价和三价阳离子(即 Cu、Mn、Ni、Zn、Fe)敏感。涉及这些相互作用的 TRPV4 的关键残基在整个脊椎动物进化过程中是保守的。因此,不同致病突变(R616Q、F617L、L618P、V620I)的情况下这种相互作用是可变的。我们的数据表明,由于不同的突变,TRPV4-Cyt C 复合物是不同的,并且对不同金属离子的存在敏感。我们提出 TRPV4-Cyt C 复合物的形成对于生理功能很重要,并且与 TRPV4 诱导的通道病相关。