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微肽与内膜中主要钙泵的相遇——对新成员SERCA1b的思考

The Meeting of Micropeptides with Major Ca Pumps in Inner Membranes-Consideration of a New Player, SERCA1b.

作者信息

Zádor Ernő

机构信息

Institute of Biochemistry, Albert Szent-Györgyi Faculty of Medicine, University of Szeged, Dóm tér 9, H-6720 Szeged, Hungary.

出版信息

Membranes (Basel). 2023 Feb 25;13(3):274. doi: 10.3390/membranes13030274.

Abstract

Calcium is a major signalling bivalent cation within the cell. Compartmentalization is essential for regulation of calcium mediated processes. A number of players contribute to intracellular handling of calcium, among them are the sarco/endoplasmic reticulum calcium ATP-ases (SERCAs). These molecules function in the membrane of ER/SR pumping Ca from cytoplasm into the lumen of the internal store. Removal of calcium from the cytoplasm is essential for signalling and for relaxation of skeletal muscle and heart. There are three genes and over a dozen isoforms of SERCA in mammals. These can be potentially influenced by small membrane peptides, also called regulins. The discovery of micropeptides has increased in recent years, mostly because of the small ORFs found in long RNAs, annotated formerly as noncoding (lncRNAs). Several excellent works have analysed the mechanism of interaction of micropeptides with each other and with the best known SERCA1a (fast muscle) and SERCA2a (heart, slow muscle) isoforms. However, the array of tissue and developmental expressions of these potential regulators raises the question of interaction with other SERCAs. For example, the most abundant calcium pump in neonatal and regenerating skeletal muscle, SERCA1b has never been looked at with scrutiny to determine whether it is influenced by micropeptides. Further details might be interesting on the interaction of these peptides with the less studied SERCA1b isoform.

摘要

钙是细胞内主要的信号转导二价阳离子。区室化对于钙介导过程的调节至关重要。许多因素参与细胞内钙的处理,其中包括肌浆/内质网钙ATP酶(SERCAs)。这些分子在内质网/肌浆网的膜中发挥作用,将钙从细胞质泵入内部储存器的腔中。从细胞质中去除钙对于信号传导以及骨骼肌和心脏的舒张至关重要。哺乳动物中有三个基因和十几种SERCA同工型。这些可能会受到小膜肽(也称为调节素)的潜在影响。近年来,微肽的发现有所增加,这主要是因为在长链RNA中发现了小开放阅读框,这些长链RNA以前被注释为非编码RNA(lncRNAs)。几项出色的研究分析了微肽彼此之间以及与最著名的SERCA1a(快肌)和SERCA2a(心脏、慢肌)同工型之间的相互作用机制。然而,这些潜在调节因子在组织和发育中的表达谱引发了它们与其他SERCA相互作用的问题。例如,新生儿和再生骨骼肌中最丰富的钙泵SERCA1b从未经过仔细研究以确定它是否受微肽影响。这些肽与研究较少的SERCA1b同工型之间的相互作用的更多细节可能会很有趣。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8650/10058886/5b8cb9b18d3f/membranes-13-00274-g002.jpg

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