Academy of Scientific and Innovative Research (AcSIR), Ghaziabad, 201002, India.
Applied Phycology and Biotechnology Division, CSIR-Central Salt and Marine Chemicals Research Institute (CSIR-CSMCRI), Council of Scientific and Industrial Research (CSIR), G.B. Marg, Bhavnagar, Gujarat, 364001, India.
J Membr Biol. 2020 Jun;253(3):191-204. doi: 10.1007/s00232-020-00119-0. Epub 2020 May 19.
The maintenance of ionic homeostasis in the cytoplasm is an essential and crucial physiological process for all living beings. At cellular level, Na concentrations are maintained by specialized Na transporting molecular machines, which operate in the cell or plasma membrane. In eukaryotes Na transporting P-type ATPase play an important role in Na homeostasis that is known as Na/K-ATPase in animal cells in which K acts as a counter ion for the exchange of sodium. Na/K-ATPase is not found in plants. In plants and fungi, proton gradients are maintained by plasma membrane H-ATPase while in animal cells Na and K gradient is maintained by Na/K-ATPase. However, in case of algae, a few reports of Na/K-ATPase are available, that maintains optimum concentration gradients in the cytoplasm and is used by Na/H antiporter to exchange of Na and H ions. The membrane potential derived as a result of ion gradients across the membrane is base for a variety of cellular processes. An active Na dependent cycle (P-type ATPase) is scarcely reported in algae as compared to marine bacteria/cyanobacteria and animals. The characterization of these transporter gene-encoding membrane transports in seaweed would contribute to the understanding of abiotic stress tolerance in these organisms. This review highlights the detailed account of algal along with animal type Na-ATPase i.e. occurrence, properties, significance and their recent progress.
细胞质中离子动态平衡的维持是所有生物的基本和关键的生理过程。在细胞水平上,Na 浓度由专门的 Na 转运分子机器维持,这些机器在细胞或质膜中运作。在真核生物中,Na 转运 P 型 ATP 酶在 Na 稳态中发挥重要作用,在动物细胞中称为 Na/K-ATP 酶,其中 K 作为 Na 交换的反离子。Na/K-ATP 酶不存在于植物中。在植物和真菌中,质膜 H-ATP 酶维持质子梯度,而在动物细胞中,Na 和 K 梯度由 Na/K-ATP 酶维持。然而,在藻类中,有一些关于 Na/K-ATP 酶的报道,它维持细胞质中的最佳浓度梯度,并被 Na/H 反向转运蛋白用于 Na 和 H 离子的交换。跨膜离子梯度产生的膜电位是多种细胞过程的基础。与海洋细菌/蓝藻和动物相比,藻类中很少有报道称存在依赖于 Na 的主动循环(P 型 ATP 酶)。这些海藻中转运蛋白基因编码的膜转运的特征将有助于理解这些生物体对非生物胁迫的耐受性。这篇综述重点介绍了藻类和动物 Na-ATP 酶的详细情况,包括它们的存在、特性、意义及其最新进展。