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PMID: 23653355 已发表 · ppublish 英语

Stability of the endosomal scaffold protein LAMTOR3 depends on heterodimer assembly and proteasomal degradation.

The Journal of biological chemistry ·第 288 卷 ·第 25 期 ·2013-09-06

de Araújo Mariana E G, Stasyk Taras, Taub Nicole, Ebner Hannes L, Fürst Beatrix, Filipek Przemyslaw, Weys Sabine R, Hess Michael W, Lindner Herbert, Kremser Leopold, Huber Lukas A

摘要

LAMTOR3 (MP1) and LAMTOR2 (p14) form a heterodimer as part of the larger Ragulator complex that is required for MAPK and mTOR1 signaling from late endosomes/lysosomes. Here, we show that loss of LAMTOR2 (p14) results in an unstable cytosolic monomeric pool of LAMTOR3 (MP1). Monomeric cytoplasmic LAMTOR3 is rapidly degraded in a proteasome-dependent but lysosome-independent manner. Mutational analyses indicated that the turnover of the protein is dependent on ubiquitination of several lysine residues. Similarly, other Ragulator subunits, LAMTOR1 (p18), LAMTOR4 (c7orf59), and LAMTOR5 (HBXIP), are degraded as well upon the loss of LAMTOR2. Thus the assembly of the Ragulator complex is monitored by cellular quality control systems, most likely to prevent aberrant signaling at the convergence of mTOR and MAPK caused by a defective Ragulator complex.

关键词
LAMTOR1 (p18) LAMTOR2 (p14) LAMTOR3 (MP1) LAMTOR4 (c7orf59) MAP Kinases (MAPKs) Protein Degradation Scaffold Proteins Signal Transduction and LAMTOR5 (HBXIP) mTOR
文献信息
期刊
The Journal of biological chemistry
期刊简称
J Biol Chem
发表日期
2013-09-06
收录日期
2013-06-24
更新日期
2016-11-22
语言
英语
国家/地区
United States
NLM ID
2985121R
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