Kim Myung Jong, Deng Han-Xiang, Wong Yvette C, Siddique Teepu, Krainc Dimitri
Hum Mol Genet. 2017 Feb 15;26(4):729-741. doi: 10.1093/hmg/ddw413.
TMEM230 is a newly identified Parkinson's disease (PD) gene encoding a transmembrane protein whose cellular and pathogenic roles remain largely unknown. Here, we demonstrate that loss of TMEM230 disrupts retromer cargo CI-M6PR (cation-independent mannose 6-phosphate receptor) trafficking and autophagic cargo degradation rates. TMEM230 depletion further inhibits extracellular secretion of the autophagic cargo p62 and immature lysosomal hydrolases in Golgi-derived vesicles leading to their intracellular accumulation, and is specifically mediated by loss of the small GTPase Rab8a. Importantly, PD-linked TMEM230 variants also induce retromer mislocalization, defective cargo trafficking, and impaired autophagy. Finally, we show that knockdown of another PD gene, LRRK2, which phosphorylates Rab8a, similarly impairs retromer trafficking, secretory autophagy and Golgi-derived vesicle secretion, thus demonstrating converging roles of two PD genes TMEM230 and LRRK2 on Rab8a function, and suggesting that retromer and secretory dysfunction play an important role in PD pathogenesis.
跨膜蛋白230(TMEM230)是一种新发现的帕金森病(PD)基因,编码一种跨膜蛋白,其细胞功能和致病机制在很大程度上仍不清楚。在此,我们证明TMEM230的缺失会破坏逆向转运蛋白货物CI-M6PR(阳离子非依赖性甘露糖6-磷酸受体)的运输以及自噬货物的降解速率。TMEM230的缺失进一步抑制了自噬货物p62和未成熟溶酶体水解酶在高尔基体衍生小泡中的细胞外分泌,导致它们在细胞内积累,这一过程由小GTP酶Rab8a的缺失特异性介导。重要的是,与PD相关的TMEM230变体也会诱导逆向转运蛋白错误定位、货物运输缺陷和自噬受损。最后,我们发现另一个PD基因LRRK2(可磷酸化Rab8a)的敲低同样会损害逆向转运蛋白运输、分泌自噬和高尔基体衍生小泡的分泌,从而证明两个PD基因TMEM230和LRRK2在Rab8a功能上具有共同作用,并表明逆向转运蛋白和分泌功能障碍在PD发病机制中起重要作用。