Osnabrück University, Department of Biology/Chemistry, Cellular Communication Laboratory, Barbarastrasse 13, 49076, Osnabrück, Germany.
Department of Structural Biology, Leibniz - Forschungsinstitut für Molekulare Pharmakologie (FMP), Robert-Roessle-Str. 10, Berlin, 13125, Germany.
EMBO J. 2024 May;43(9):1870-1897. doi: 10.1038/s44318-024-00097-2. Epub 2024 Apr 8.
Yeast vacuoles perform crucial cellular functions as acidic degradative organelles, storage compartments, and signaling hubs. These functions are mediated by important protein complexes, including the vacuolar-type H-ATPase (V-ATPase), responsible for organelle acidification. To gain a more detailed understanding of vacuole function, we performed cross-linking mass spectrometry on isolated vacuoles, detecting many known as well as novel protein-protein interactions. Among these, we identified the uncharacterized TLDc-domain-containing protein Rtc5 as a novel interactor of the V-ATPase. We further analyzed the influence of Rtc5 and of Oxr1, the only other yeast TLDc-domain-containing protein, on V-ATPase function. We find that both Rtc5 and Oxr1 promote the disassembly of the vacuolar V-ATPase in vivo, counteracting the role of the RAVE complex, a V-ATPase assembly chaperone. Furthermore, Oxr1 is necessary for the retention of a Golgi-specific subunit of the V-ATPase in this compartment. Collectively, our results shed light on the in vivo roles of yeast TLDc-domain proteins as regulators of the V-ATPase, highlighting the multifaceted regulation of this crucial protein complex.
酵母液泡作为酸性降解细胞器、储存室和信号枢纽,执行着至关重要的细胞功能。这些功能由重要的蛋白质复合物介导,包括液泡型 H+-ATP 酶 (V-ATPase),它负责细胞器酸化。为了更详细地了解液泡的功能,我们对分离的液泡进行了交联质谱分析,检测到许多已知和新的蛋白质-蛋白质相互作用。在这些相互作用中,我们鉴定了未被表征的 TLDc 结构域蛋白 Rtc5 是 V-ATPase 的一个新的相互作用蛋白。我们进一步分析了 Rtc5 和 Oxr1(酵母中唯一的另一种 TLDc 结构域蛋白)对 V-ATPase 功能的影响。我们发现,Rtc5 和 Oxr1 都能促进液泡 V-ATPase 在体内的解体,从而抵消了 RAVE 复合物(V-ATPase 组装伴侣)的作用。此外,Oxr1 对于 V-ATPase 的高尔基体特异性亚基在该隔室中的保留是必需的。总之,我们的结果阐明了酵母 TLDc 结构域蛋白作为 V-ATPase 调节剂的体内作用,突出了这个关键蛋白质复合物的多方面调节。