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X连锁智力障碍相关的CUL4B突变体在促进结节性硬化症复合物2(TSC2)降解以及正向调节新皮质神经元中的mTOR信号传导方面存在缺陷。

XLID CUL4B mutants are defective in promoting TSC2 degradation and positively regulating mTOR signaling in neocortical neurons.

作者信息

Wang Hung-Li, Chang Ning-Chun, Weng Yi-Hsin, Yeh Tu-Hsueh

机构信息

Department of Physiology, Chang Gung University School of Medicine, Taiwan, Republic of China.

出版信息

Biochim Biophys Acta. 2013 Apr;1832(4):585-93. doi: 10.1016/j.bbadis.2013.01.010. Epub 2013 Jan 22.

Abstract

Truncating or missense mutation of cullin 4B (CUL4B) is one of the most prevalent causes underlying X-linked intellectual disability (XLID). CUL4B-RING E3 ubiquitin ligase promotes ubiquitination and degradation of various proteins. Consistent with previous studies, overexpression of wild-type CUL4B in 293 cells enhanced ubiquitylation and degradation of TSC2 or cyclin E. The present study shows that XLID mutant (R388X), (R572C) or (V745A) CULB failed to promote ubiquitination and degradation of TSC2 or cyclin E. Adenoviruses-mediated expression of wild-type CUL4B decreased protein level of TSC2 or cyclin E in cultured neocortical neurons of frontal lobe. Furthermore, shRNA-mediated CUL4B knockdown caused an upregulation of TSC2 or cyclin E. XLID mutant (R388X), (R572C) or (V745A) CUL4B did not downregulate protein expression of TSC2 or cyclin E in neocortical neurons. By promoting TSC2 degradation, CUL4B could positively regulate mTOR activity in neocortical neurons of frontal cortex. Consistent with this hypothesis, CUL4B knockdown-induced upregulation of TSC2 in neocortical neurons resulted in a decreased protein level of active phospho-mTOR(Ser2448) and a reduced expression of active phospho-p70S6K(Thr389) and phospho-4E-BP1(Thr37/46), two main substrates of mTOR-mediated phosphorylation. Wild-type CUL4B also increased protein level of active phospho-mTOR(Ser2448), phospho-p70S6K(Thr389) or phospho-4E-BP1(Thr37/46). XLID CUL4B mutants did not affect protein level of active phospho-mTOR(Ser2448), phospho-p70S6K(Thr389) or phospho-4E-BP1(Thr37/46). Our results suggest that XLID CUL4B mutants are defective in promoting TSC2 degradation and positively regulating mTOR signaling in neocortical neurons.

摘要

Cullin 4B(CUL4B)的截短或错义突变是X连锁智力障碍(XLID)最常见的潜在病因之一。CUL4B-RING E3泛素连接酶促进各种蛋白质的泛素化和降解。与先前的研究一致,野生型CUL4B在293细胞中的过表达增强了TSC2或细胞周期蛋白E的泛素化和降解。本研究表明,XLID突变体(R388X)、(R572C)或(V745A)CULB未能促进TSC2或细胞周期蛋白E的泛素化和降解。腺病毒介导的野生型CUL4B表达降低了额叶培养的新皮质神经元中TSC2或细胞周期蛋白E的蛋白水平。此外,shRNA介导的CUL4B敲低导致TSC2或细胞周期蛋白E上调。XLID突变体(R388X)、(R572C)或(V745A)CUL4B并未下调新皮质神经元中TSC2或细胞周期蛋白E的蛋白表达。通过促进TSC2降解,CUL4B可以正向调节额叶皮质新皮质神经元中的mTOR活性。与这一假设一致,CUL4B敲低诱导的新皮质神经元中TSC2上调导致活性磷酸化mTOR(Ser2448)蛋白水平降低,以及mTOR介导磷酸化的两个主要底物活性磷酸化p70S6K(Thr389)和磷酸化4E-BP1(Thr37/46)的表达降低。野生型CUL4B也增加了活性磷酸化mTOR(Ser2448)、磷酸化p70S6K(Thr389)或磷酸化4E-BP1(Thr37/46)的蛋白水平。XLID CUL4B突变体不影响活性磷酸化mTOR(Ser2448)、磷酸化p70S6K(Thr389)或磷酸化4E-BP1(Thr37/46)的蛋白水平。我们的结果表明,XLID CUL4B突变体在促进新皮质神经元中TSC2降解和正向调节mTOR信号方面存在缺陷。

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