Chauhan Pankaj Kumar, Sowdhamini R
National Centre for Biological Sciences Tata Institute of Fundamental Research, Bangalore Karnataka, India.
Molecular Biophysics Unit, Indian Institute of Science, Bangalore, India.
Front Genet. 2023 Mar 29;14:1134509. doi: 10.3389/fgene.2023.1134509. eCollection 2023.
One of the key proteins that are present in the Z-disc of cardiac tissues, CSRP3, has been implicated in dilated and hypertrophic cardiomyopathy leading to heart failure. Although multiple cardiomyopathy-related mutations have been reported to reside on the two LIM domains and the disordered regions connecting the domains in this protein, the exact role of the disordered linker region is not clear. The linker harbors a few post-translational modification sites and is expected to be a regulatory site. We have carried out evolutionary studies on 5614 homologs spanning across taxa. We also performed molecular dynamics simulations of full-length CSRP3 to show that the length variations and conformational flexibility of the disordered linker could provide additional levels of functional modulation. Finally, we show that the CSRP3 homologs with widely different lengths of the linker regions could display diversity in their functional specifications. The present study provides a useful perspective to our understanding of the evolution of the disordered region between CSRP3 LIM domains.
心肌组织Z盘存在的关键蛋白之一CSRP3,与导致心力衰竭的扩张型和肥厚型心肌病有关。尽管已报道该蛋白的两个LIM结构域及连接这些结构域的无序区域存在多个与心肌病相关的突变,但无序连接区的确切作用尚不清楚。该连接区含有一些翻译后修饰位点,预计是一个调控位点。我们对跨越多个分类群的5614个同源物进行了进化研究。我们还对全长CSRP3进行了分子动力学模拟,以表明无序连接区的长度变化和构象灵活性可提供额外的功能调节水平。最后,我们表明连接区长度差异很大的CSRP3同源物在功能特性上可能表现出多样性。本研究为我们理解CSRP3 LIM结构域之间无序区域的进化提供了有益的视角。