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通过mTOR的SNAT2转受体信号传导:在细胞生长和增殖中起作用?

SNAT2 transceptor signalling via mTOR: a role in cell growth and proliferation?

作者信息

Pinilla Jorge, Aledo Juan Carlos, Cwiklinski Emma, Hyde Russell, Taylor Peter M, Hundal Harinder S

机构信息

Division of Molecular Physiology, James Black Centre, College of Life Sciences, University of Dundee, Dundee, United Kingdom.

出版信息

Front Biosci (Elite Ed). 2011 Jun 1;3(4):1289-99. doi: 10.2741/e332.

Abstract

We have investigated the effect of chronic competitive inhibition of SNAT2 (System A) amino acid (AA) transport, induced by incubation with a saturating dose of a non-metabolisable System A amino acid analogue (Me-AIB), on growth and proliferation of MCF-7 human breast cancer cells in complete culture medium. These cells express Na+- and pH-dependent SNAT2 AA transport and a saturating concentration of Me-AIB (10 mM) competitively inhibits (>90%) AA uptake via SNAT2. Incubation with Me-AIB for up to 5 days progressively reduced cell proliferation (~2-fold) and depleted intracellular concentrations of not only SNAT2 AA substrates but of essential branched chain AAs (e.g. leucine). Surprisingly, total cellular protein was maintained and cells subjected to chronic Me-AIB incubation exhibited a detectable increase in cell size. Analysis of mTOR signalling revealed that, despite a substantial reduction in size of the intracellular AA pool, Me-AIB elevated mTOR-dependent p70S6K1 phosphorylation. Proteomic analysis of TAP-tag purified SNAT2 fusion proteins identified two novel SNAT2-interacting proteins that may potentially function in conjunction with the SNAT2 transceptor to regulate signalling pathways influencing protein turnover and cell growth.

摘要

我们研究了在完全培养基中,用饱和剂量的不可代谢的A系统氨基酸类似物(甲基氨基异丁酸,Me-AIB)孵育诱导的SNAT2(A系统)氨基酸(AA)转运的慢性竞争性抑制对MCF-7人乳腺癌细胞生长和增殖的影响。这些细胞表达依赖于钠离子和pH的SNAT2氨基酸转运,饱和浓度的Me-AIB(10 mM)竞争性抑制(>90%)通过SNAT2的氨基酸摄取。用Me-AIB孵育长达5天会逐渐降低细胞增殖(约2倍),并耗尽细胞内不仅SNAT2氨基酸底物而且必需支链氨基酸(如亮氨酸)的浓度。令人惊讶的是,细胞总蛋白得以维持,并且经历慢性Me-AIB孵育的细胞表现出可检测到的细胞大小增加。对mTOR信号传导的分析表明,尽管细胞内氨基酸池大小大幅减小,但Me-AIB提高了mTOR依赖的p70S6K1磷酸化。对TAP标签纯化的SNAT2融合蛋白的蛋白质组学分析鉴定出两种新的与SNAT2相互作用的蛋白,它们可能与SNAT2转ceptor协同发挥作用,以调节影响蛋白质周转和细胞生长的信号通路。

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