Priya Amulya, Kalaidzidis Inna V, Kalaidzidis Yannis, Lambright David, Datta Sunando
Department of Biological Sciences, Indian Institute of Science Education and Research Bhopal, ITI Gas Rahat Building, Bhopal, 462023, India.
Traffic. 2015 Jan;16(1):68-84. doi: 10.1111/tra.12237. Epub 2014 Dec 1.
Retromer, a peripheral membrane protein complex, plays an instrumental role in host of cellular processes by its ability to recycle receptors from endosomes to the trans-Golgi network. It consists of two distinct sub-complexes, a membrane recognizing, sorting nexins (SNX) complex and a cargo recognition, vacuolar protein sorting (Vps) complex. Small GTPase, Rab7 is known to recruit retromer on endosomal membrane via interactions with the Vps sub-complex. The molecular mechanism underlying the recruitment process including the role of individual Vps proteins is yet to be deciphered. In this study, we developed a FRET-based assay in HeLa cells that demonstrated the interaction of Rab7 with Vps35 and Vps26 in vivo. Furthermore, we showed that Rab7 recruits retromer to late endosomes via direct interactions with N-terminal conserved regions in Vps35. However, the single point mutation, which disrupts the interaction between Vps35 and Vps26, perturbed the Rab7-mediated recruitment of retromer in HeLa cells. Using biophysical measurements, we demonstrate that the association of Vps26 with Vps35 resulted in high affinity binding between the Vps sub-complex and the activated Rab7 suggesting for a possible allosteric role of Vps26. Thus, this study provides molecular insights into the essential role of Vps26 and Vps35 in Rab7-mediated recruitment of the core retromer complex.
逆转录酶复合物是一种外周膜蛋白复合物,通过将受体从内体循环至反式高尔基体网络的能力,在众多细胞过程中发挥着重要作用。它由两个不同的亚复合物组成,一个是膜识别分拣连接蛋白(SNX)复合物,另一个是货物识别液泡蛋白分选(Vps)复合物。已知小GTP酶Rab7通过与Vps亚复合物相互作用,在内体膜上招募逆转录酶复合物。招募过程的分子机制,包括各个Vps蛋白的作用,仍有待阐明。在本研究中,我们在HeLa细胞中开发了一种基于荧光共振能量转移(FRET)的检测方法,证明了Rab7与Vps35和Vps26在体内的相互作用。此外,我们表明Rab7通过与Vps35的N端保守区域直接相互作用,将逆转录酶复合物招募至晚期内体。然而,破坏Vps35和Vps26之间相互作用的单点突变,扰乱了HeLa细胞中Rab7介导的逆转录酶复合物招募。通过生物物理测量,我们证明Vps26与Vps35的结合导致Vps亚复合物与活化的Rab7之间的高亲和力结合,这表明Vps26可能具有变构作用。因此,本研究为Vps26和Vps35在Rab7介导的核心逆转录酶复合物招募中的重要作用提供了分子见解。