Domínguez Delfina C, Guragain Manita, Patrauchan Marianna
Clinical Laboratory Sciences Program, The University of Texas at El Paso, El Paso, TX, 79902, USA.
Department of Microbiology and Molecular Genetics, Oklahoma State University, Stillwater, 74075, USA.
Cell Calcium. 2015 Mar;57(3):151-65. doi: 10.1016/j.ceca.2014.12.006. Epub 2014 Dec 17.
With the continued increase of genomic information and computational analyses during the recent years, the number of newly discovered calcium binding proteins (CaBPs) in prokaryotic organisms has increased dramatically. These proteins contain sequences that closely resemble a variety of eukaryotic calcium (Ca(2+)) binding motifs including the canonical and pseudo EF-hand motifs, Ca(2+)-binding β-roll, Greek key motif and a novel putative Ca(2+)-binding domain, called the Big domain. Prokaryotic CaBPs have been implicated in diverse cellular activities such as division, development, motility, homeostasis, stress response, secretion, transport, signaling and host-pathogen interactions. However, the majority of these proteins are hypothetical, and only few of them have been studied functionally. The finding of many diverse CaBPs in prokaryotic genomes opens an exciting area of research to explore and define the role of Ca(2+) in organisms other than eukaryotes. This review presents the most recent developments in the field of CaBPs and novel advancements in the role of Ca(2+) in prokaryotes.
近年来,随着基因组信息和计算分析的持续增加,原核生物中新发现的钙结合蛋白(CaBP)数量急剧增加。这些蛋白质包含与多种真核钙(Ca(2+))结合基序非常相似的序列,包括典型和伪EF手基序、Ca(2+)结合β-折叠、希腊钥匙基序以及一种名为大结构域的新型假定Ca(2+)结合结构域。原核生物CaBP参与了多种细胞活动,如分裂、发育、运动、稳态、应激反应、分泌、运输、信号传导以及宿主-病原体相互作用。然而,这些蛋白质中的大多数都是假设性的,只有少数进行了功能研究。在原核生物基因组中发现许多不同的CaBP,为探索和定义Ca(2+)在真核生物以外的生物体中的作用开辟了一个令人兴奋的研究领域。本综述介绍了CaBP领域的最新进展以及Ca(2+)在原核生物中作用的新进展。