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核内质网靶向蛋白酪氨酸磷酸酶 61F 调节果蝇的生长、寿命和繁殖力。

The nucleus- and endoplasmic reticulum-targeted forms of protein tyrosine phosphatase 61F regulate Drosophila growth, life span, and fecundity.

机构信息

School of Biological Sciences, Monash University, Clayton, Victoria, Australia.

出版信息

Mol Cell Biol. 2013 Apr;33(7):1345-56. doi: 10.1128/MCB.01411-12. Epub 2013 Jan 22.

Abstract

The protein tyrosine phosphatases (PTPs) T cell PTP (TCPTP) and PTP1B share a high level of catalytic domain sequence and structural similarity yet display distinct differences in substrate recognition and function. Their noncatalytic domains contribute to substrate selectivity and function by regulating TCPTP nucleocytoplasmic shuttling and targeting PTP1B to the endoplasmic reticulum (ER). The Drosophila TCPTP/PTP1B orthologue PTP61F has two variants with identical catalytic domains that are differentially targeted to the ER and nucleus. Here we demonstrate that the PTP61F variants differ in their ability to negatively regulate insulin signaling in vivo, with the nucleus-localized form (PTP61Fn) being more effective than the ER-localized form (PTP61Fm). We report that PTP61Fm is reliant on the adaptor protein Dock to attenuate insulin signaling in vivo. Also, we show that the PTP61F variants differ in their capacities to regulate growth, with PTP61Fn but not PTP61Fm attenuating cellular proliferation. Furthermore, we generate a mutant lacking both PTP61F variants, which displays a reduction in median life span and a decrease in female fecundity, and show that both variants are required to rescue these mutant phenotypes. Our findings define the role of PTP61F in life span and fecundity and reinforce the importance of subcellular localization in mediating PTP function in vivo.

摘要

蛋白酪氨酸磷酸酶(PTPs)T 细胞 PTP(TCPTP)和 PTP1B 具有高度的催化结构域序列和结构相似性,但在底物识别和功能上表现出明显的差异。它们的非催化结构域通过调节 TCPTP 的核质穿梭和将 PTP1B 靶向内质网(ER)来促进底物的选择性和功能。果蝇 TCPTP/PTP1B 同源物 PTP61F 有两种具有相同催化结构域的变体,它们分别被靶向到 ER 和细胞核。在这里,我们证明了 PTP61F 变体在体内负调控胰岛素信号的能力不同,定位于细胞核的形式(PTP61Fn)比定位于 ER 的形式(PTP61Fm)更有效。我们报告说,PTP61Fm 依赖衔接蛋白 Dock 在体内减弱胰岛素信号。此外,我们还表明,PTP61F 变体在调节生长方面存在差异,PTP61Fn 但不是 PTP61Fm 可减弱细胞增殖。此外,我们生成了一种缺乏两种 PTP61F 变体的突变体,该突变体显示出平均寿命缩短和雌性生育力下降,并且表明两种变体都需要挽救这些突变表型。我们的研究结果定义了 PTP61F 在寿命和生育力中的作用,并强调了亚细胞定位在体内介导 PTP 功能的重要性。

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