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伊拉贝拉信号通路在生理和病理条件下的网络图。

The network map of Elabela signaling pathway in physiological and pathological conditions.

作者信息

Dagamajalu Shobha, Rex D A B, Suchitha G P, Rai Akhila B, Rainey Jan K, Prasad T S Keshava

机构信息

Center for Systems Biology and Molecular Medicine, Yenepoya Research Centre, Yenepoya (Deemed to be University), Mangalore, 575018, India.

Department of Biochemistry and Molecular Biology, Department of Chemistry, and School of Biomedical Engineering, Dalhousie University, Halifax, NS, B3H 4R2, Canada.

出版信息

J Cell Commun Signal. 2022 Mar;16(1):145-154. doi: 10.1007/s12079-021-00640-4. Epub 2021 Aug 2.

Abstract

Elabela (ELA; also called Apela and Toddler) is one of the recently discovered ligand among the two endogenous peptide ligands (Apelin and Elabela) of the apelin receptor (APLNR, also known as APJ). Elabela-induced signaling plays a crucial role in diverse biological processes, including formation of the embryonic cardiovascular system and early placental development by reducing the chances of occurrence of preeclampsia during pregnancy. It also plays the major role in the renoprotection by reducing kidney injury and the inflammatory response and regulation of gene expression associated with heart failure and fibrosis. Elabela may be processed into different active peptides, each of which binds to APLNR and predominantly activates the signals through PI3K/AKT pathway. Owing to its biomedical importance, we developed a consolidated signaling map of Elabela, in accordance with the NetPath criteria. The presented Elabela signaling map comprises 12 activation/inhibition events, 15 catalysis events, 1 molecular association, 34 gene regulation events and 32 protein expression events. The Elabela signaling pathway map is freely made available through the WikiPathways Database ( https://www.wikipathways.org/index.php/Pathway:WP5100 ).

摘要

埃拉贝拉(ELA;也称为阿佩拉和托德林)是最近发现的apelin受体(APLNR,也称为APJ)的两种内源性肽配体(apelin和埃拉贝拉)之一。埃拉贝拉诱导的信号传导在多种生物学过程中起着关键作用,包括胚胎心血管系统的形成和早期胎盘发育,通过降低孕期子痫前期的发生几率。它在肾脏保护中也起着主要作用,通过减少肾损伤、炎症反应以及调节与心力衰竭和纤维化相关的基因表达。埃拉贝拉可能被加工成不同的活性肽,每种活性肽都与APLNR结合,并主要通过PI3K/AKT途径激活信号。由于其在生物医学上的重要性,我们根据NetPath标准绘制了一份整合的埃拉贝拉信号通路图。所展示的埃拉贝拉信号通路图包含12个激活/抑制事件、15个催化事件、1个分子关联、34个基因调控事件和32个蛋白质表达事件。埃拉贝拉信号通路图可通过WikiPathways数据库(https://www.wikipathways.org/index.php/Pathway:WP5100)免费获取。

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