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mTORc1活性对于内皮型一氧化氮合酶(eNOS)的磷酸化是必要且充分的。

mTORc1 activity is necessary and sufficient for phosphorylation of eNOS.

作者信息

Decker Brandee, Pumiglia Kevin

机构信息

Department of Regenerative and Cancer Cell Biology, Albany Medical College, Albany, New York.

出版信息

Physiol Rep. 2018 Jun;6(12):e13733. doi: 10.14814/phy2.13733.

Abstract

Nitric oxide, produced by eNOS, plays critical roles in the regulation of vascular function and maintenance. Chronic PI3K signaling has recently been associated with vascular malformations. A well described substrate downstream of PI3K signaling is eNOS. Another critical downstream target of PI3K is the metabolic regulator, mTORc1. The relationship between mTORc1 and eNOS regulation, has not been determined. We generated cells with manipulated PI3K signaling by expressing the activating mutation, PIK3CA , or knocking down PTEN expression. We investigated eNOS phosphorylation, a major activating regulatory site, following mTORC1 inhibition. We also tested the sufficiency of mTORc1 activation to stimulate eNOS phosphorylation. Our data indicate mTORc1 activity is required for the phosphorylation of eNOS , even in the presence of robust AKT activation. Moreover, we found that expression of RHEB, which functions in the absence of AKT activation to activate mTORc1, is sufficient to phosphorylate this site. Our data indicate that mTORc1, rather than AKT, may be the critical determinant of eNOS phosphorylation. As mTORc1 is a central regulator of cellular metabolism, the finding that this regulatory complex can directly participate in the regulation of eNOS provides new insights into metabolic uncoupling and vascular disease that often accompanies diabetes, high fat diets, and aging.

摘要

由内皮型一氧化氮合酶(eNOS)产生的一氧化氮在血管功能调节和维持中起关键作用。慢性PI3K信号传导最近与血管畸形有关。PI3K信号传导下游一个已被充分描述的底物是eNOS。PI3K的另一个关键下游靶点是代谢调节因子mTORc1。mTORc1与eNOS调节之间的关系尚未确定。我们通过表达激活突变体PIK3CA或敲低PTEN表达来生成具有被操纵的PI3K信号传导的细胞。我们在mTORC1抑制后研究了eNOS磷酸化,这是一个主要的激活调节位点。我们还测试了mTORc1激活刺激eNOS磷酸化的充分性。我们的数据表明,即使在存在强大的AKT激活的情况下,mTORc1活性对于eNOS的磷酸化也是必需的。此外,我们发现,在不存在AKT激活的情况下发挥作用以激活mTORc1的RHEB的表达足以使该位点磷酸化。我们的数据表明,mTORc1而非AKT可能是eNOS磷酸化的关键决定因素。由于mTORc1是细胞代谢的核心调节因子,这一调节复合物可直接参与eNOS调节的发现为代谢解偶联以及常伴随糖尿病、高脂饮食和衰老的血管疾病提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c2ac/6014452/6202ac01e98a/PHY2-6-e13733-g001.jpg

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