Amity Institute of Biotechnology, Amity University Uttar Pradesh, Lucknow, 226028, India.
St. Xavier's College, Kolkata, India.
Biochimie. 2021 Mar;182:85-98. doi: 10.1016/j.biochi.2021.01.004. Epub 2021 Jan 13.
Cation and protons perform a substantial role in all the organism and its homeostasis within the cells are maintained by the cation-proton antiporters (CPAs). CPA is the huge family of the membrane transporter protein throughout the plant and animal kingdom including microorganism. In human, any malfunctioning of these proteins may lead to severe diseases like hypertension, heart diseases etc and CPAs are recently proposed to be responsible for the virulent property of various pathogens including Vibrio cholerae, Yersinia pestis etc. Human Sodium-Proton exchangers (Na/H exchangers, NHEs) are crucial in ion homeostasis whereas Ec-NhaA, Na + -H + Antiporters maintain a balance of Na+ and proton in E. coli, regulating pH and cell volume within the cell. These Sodium-Proton antiporters are found to be responsible for the virulence in various pathogens causing human diseases. Understanding of these CPAs may assist investigators to target such human diseases, that further may lead to establishing the effective path for therapeutics or drug designing against associated human disease. Here we have compiled all such information on CPAs and provide a systematic approach to unravel the mechanism and role of antiporter proteins in a wide range of organisms. Being involved throughout all the species, this review on cation-proton antiporters may attract the attention of many investigators and concerned researchers and will be provided with the recent detailed information on the role of CPA in human health.
阳离子和质子在所有生物体中都起着重要作用,细胞内的质子-阳离子反向转运蛋白 (CPA) 维持着细胞内的阳离子-质子平衡。CPA 是一个庞大的膜转运蛋白家族,存在于植物和动物王国,包括微生物。在人类中,这些蛋白质的任何功能障碍都可能导致严重的疾病,如高血压、心脏病等,最近有人提出,CPA 负责各种病原体(包括霍乱弧菌、鼠疫耶尔森菌等)的毒力特性。人类钠离子-质子交换器(Na/H 交换器,NHEs)在离子稳态中起着至关重要的作用,而 Ec-NhaA,Na + -H + 反向转运蛋白在大肠杆菌中维持 Na + 和质子的平衡,调节细胞内的 pH 值和细胞体积。这些钠离子-质子反向转运蛋白被发现与各种导致人类疾病的病原体的毒力有关。对这些 CPA 的了解可能有助于研究人员针对这些人类疾病,进一步为相关人类疾病的治疗或药物设计建立有效的途径。在这里,我们收集了关于 CPA 的所有信息,并提供了一种系统的方法来揭示反向转运蛋白在广泛的生物体中的作用和机制。由于涉及所有物种,这篇关于阳离子-质子反向转运蛋白的综述可能会引起许多研究人员和相关研究人员的关注,并提供关于 CPA 在人类健康中的作用的最新详细信息。