Department of Medicine and Life Sciences (MELIS), Pompeu Fabra University (UPF), Barcelona, Spain.
Department of Cell Biology, University of Seville, Seville, Spain.
EMBO Rep. 2023 May 4;24(5):e56134. doi: 10.15252/embr.202256134. Epub 2023 Mar 16.
Multisubunit Tethering Complexes (MTCs) are a set of conserved protein complexes that tether vesicles at the acceptor membrane. Interactions with other components of the trafficking machinery regulate MTCs through mechanisms that are partially understood. Here, we systematically investigate the interactome that regulates MTCs. We report that P4-ATPases, a family of lipid flippases, interact with MTCs that participate in the anterograde and retrograde transport at the Golgi, such as TRAPPIII. We use the P4-ATPase Drs2 as a paradigm to investigate the mechanism and biological relevance of this interplay during transport of Atg9 vesicles. Binding of Trs85, the sole-specific subunit of TRAPPIII, to the N-terminal tail of Drs2 stabilizes TRAPPIII on membranes loaded with Atg9 and is required for Atg9 delivery during selective autophagy, a role that is independent of P4-ATPase canonical functions. This mechanism requires a conserved I(S/R)TTK motif that also mediates the interaction of the P4-ATPases Dnf1 and Dnf2 with MTCs, suggesting a broader role of P4-ATPases in MTC regulation.
多亚基连接复合物(MTCs)是一组保守的蛋白质复合物,可将囊泡连接到靶膜上。与运输机制的其他成分的相互作用通过部分理解的机制来调节 MTCs。在这里,我们系统地研究了调节 MTCs 的相互作用组。我们报告说,P4-ATPases(一种脂质翻转酶家族)与参与高尔基体正向和逆向运输的 MTC 相互作用,例如 TRAPPIII。我们使用 P4-ATPase Drs2 作为范例,研究了在 Atg9 囊泡运输过程中这种相互作用的机制和生物学相关性。TRAPPIII 的唯一特异性亚基 Trs85 与 Drs2 的 N 端尾巴结合,稳定了装载 Atg9 的膜上的 TRAPPIII,并在选择性自噬期间需要 Atg9 的传递,这一作用独立于 P4-ATPase 的典型功能。这种机制需要一个保守的 I(S/R)TTK 基序,该基序还介导了 P4-ATPases Dnf1 和 Dnf2 与 MTCs 的相互作用,表明 P4-ATPases 在 MTC 调节中具有更广泛的作用。