Weill Institute of Cell and Molecular Biology, Cornell University, Ithaca, United States.
Department of Molecular Biology and Genetics, Cornell University, Ithaca, United States.
Elife. 2022 Jun 30;11:e77424. doi: 10.7554/eLife.77424.
Nedd4/Rsp5 family E3 ligases mediate numerous cellular processes, many of which require the E3 ligase to interact with PY motif containing adaptor proteins. Several arrestin-related trafficking adaptors (ARTs) of Rsp5 were self-ubiquitinated for activation, but the regulation mechanism remains elusive. Remarkably, we demonstrate that Art1, Art4, and Art5 undergo K63-linked di-ubiquitination by Rsp5. This modification enhances the plasma membrane recruitment of Rsp5 by Art1 or Art5 upon substrate induction, required for cargo protein ubiquitination. In agreement with these observations, we find that di-ubiquitin strengthens the interaction between the pombe orthologs of Rsp5 and Art1, Pub1, and Any1. Furthermore, we discover that the homologous to E6AP C-terminus (HECT) domain exosite protects the K63-linked di-ubiquitin on the adaptors from cleavage by the deubiquitination enzyme Ubp2. Together, our study uncovers a novel ubiquitination modification implemented by Rsp5 adaptor proteins, underscoring the regulatory mechanism of how adaptor proteins control the recruitment, and activity of Rsp5 for the turnover of membrane proteins.
Nedd4/Rsp5 家族 E3 连接酶介导许多细胞过程,其中许多过程需要 E3 连接酶与含有 PY 基序的衔接蛋白相互作用。Rsp5 的几个 arrestin 相关转运衔接蛋白(ART)自我泛素化以被激活,但调节机制仍不清楚。值得注意的是,我们证明 Art1、Art4 和 Art5 被 Rsp5 进行 K63 连接的二泛素化。这种修饰增强了底物诱导时 Art1 或 Art5 上 Rsp5 的质膜募集,这对于货物蛋白泛素化是必需的。与这些观察结果一致,我们发现二泛素增强了 Rsp5 和 Art1、Pub1 和 Any1 的 fission 酵母同源物之间的相互作用。此外,我们发现与 E6AP C 末端(HECT)结构域外显子结合的类似物保护衔接子上的 K63 连接二泛素免受去泛素化酶 Ubp2 的切割。总之,我们的研究揭示了 Rsp5 衔接蛋白实施的一种新型泛素化修饰,强调了衔接蛋白如何控制 Rsp5 募集和活性以实现膜蛋白周转的调节机制。