降钙素基因相关肽通过PI3K/Akt和MAPK信号通路调控氧化应激,调控心肌细胞存活

Nsini A Umoh, Robin K Walker, Richard M Millis, Mustafa Al-Rubaiee, Pandu R Gangula, Georges E Haddad
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摘要

在心脏中发现CGRP和特定的CGRP受体,它们产生正性肌力和抗凋亡作用,这是对运动和心血管疾病的关键适应。PI3K/Akt和MAPK信号失衡与心肌细胞病理相关;然而,CGRP对这些途径的影响尚不清楚。因此,我们假设CGRP通过调节PI3K/Akt和MAPK/ERK信号平衡来调节心肌细胞的肌力和凋亡适应。我们联合使用CGRP、PI3K/Akt和MAPK信号激动剂和拮抗剂治疗心肌细胞。我们评估了与PI3K/Akt和MAPK相关的存活信号分子mRNA和蛋白水平的表达,并通过caspase 3/7活性检测细胞凋亡。CGRP1-37可抑制Akt、NFκB、SOD-3的表达,上调ERK1/2和p38 MAPK的表达,并可拮抗。akt阴性构建体转染Ad.Akt(K179M)可抑制cgrp1 -37诱导的MAPK表达的增加。pi3k拮抗剂LY294002或CGRP1-37/Ad.Akt(K179M)共处理可缓解cgrp升高的caspase活性和SOD-3的-降低。这些发现表明,CGRP对正常心肌细胞中PI3K/Akt信号通路和CGRP受体诱导的PI3K/Akt与MAPK之间的串扰具有负作用。进一步研究病理条件下CGRP对细胞内信号转导机制的影响,将阐明CGRP在心力衰竭中的意义,并为心力衰竭的治疗提供新的靶点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Calcitonin Gene-Related Peptide Regulates Cardiomyocyte Survival through Regulation of Oxidative Stress by PI3K/Akt and MAPK Signaling Pathways.

CGRP and specific CGRP receptors are found in the heart where they produce positive-inotropic and anti-apoptotic effects, key adaptations to exercise and cardiovascular disease. PI3K/Akt and MAPK signaling imbalances are associated with cardiomyocyte pathologies; however, the effects of CGRP on these pathways are unclear. Therefore, we hypothesized that CGRP modulates inotropic and apoptotic adaptations of cardiomyocytes by regulating PI3K/Akt and MAPK/ERK signaling balances. We treated cardiomyocytes with combinations of CGRP, PI3K/Akt and MAPK signaling agonists and antagonists. We evaluated expression of the mRNA and proteins levels of survival signaling molecules related to the PI3K/Akt and MAPK and measured apoptosis by caspase 3/7 activity. CGRP1-37 decreased Akt, NFκB, SOD-3 and increased ERK1/2 and p38 MAPK expressions, which was antagonized by CGRP8-37. Akt-negative construct transfection, Ad.Akt(K179M), inhibited the CGRP1-37-induced increment in MAPK expressions. A PI3K-antagonist treatment with LY294002 or CGRP1-37/Ad.Akt(K179M) co-treatment alleviated the CGRP-increased caspase activity and -decrements in SOD-3. These findings demonstrate a CGRP negative effect on the PI3K/Akt signaling pathway and CGRP receptor-induced crosstalk between PI3K/Akt and MAPK in normal cardiomyocytes. Future studies to differentiate CGRP effects on intracellular signal transduction mechanisms in pathological conditions will elucidate the significance of CGRP in, and provide novel therapeutic targets for, heart failure.

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