Department of Biological Sciences and Biotechnology, Chungbuk National University, Cheongju, 28644, South Korea.
School of Biological Sciences, Seoul National University, Seoul, 08826, South Korea.
Cell Mol Life Sci. 2024 Jul 30;81(1):322. doi: 10.1007/s00018-024-05366-1.
Transmembrane protein 9 (TMEM9) is a transmembrane protein that regulates lysosomal acidification by interacting with the v-type ATPase complex. However, the role of TMEM9 in the lysosome-dependent autophagy machinery has yet to be identified. In this study, we demonstrate that the lysosomal protein TMEM9, which is involved in vesicle acidification, regulates Rab9-dependent alternative autophagy through its interaction with Beclin1. The cytosolic domain of TMEM9 interacts with Beclin1 via its Bcl-2-binding domain. This interaction between TMEM9 and Beclin1 dissociates Bcl-2, an autophagy-inhibiting partner, from Beclin1, thereby activating LC3-independent and Rab9-dependent alternative autophagy. Late endosomal and lysosomal TMEM9 apparently colocalizes with Rab9 but not with LC3. Furthermore, we show that multiple glycosylation of TMEM9, essential for lysosomal localization, is essential for its interaction with Beclin1 and the activation of Rab9-dependent alternative autophagy. These findings reveal that TMEM9 recruits and activates the Beclin1 complex at the site of Rab9-dependent autophagosome to induce alternative autophagy.
跨膜蛋白 9(TMEM9)是一种跨膜蛋白,通过与 v 型 ATP 酶复合物相互作用来调节溶酶体酸化。然而,TMEM9 在溶酶体依赖性自噬机制中的作用尚未确定。在这项研究中,我们证明了参与囊泡酸化的溶酶体蛋白 TMEM9 通过与 Beclin1 相互作用来调节 Rab9 依赖性替代自噬。TMEM9 的细胞质结构域通过其 Bcl-2 结合结构域与 Beclin1 相互作用。TMEM9 和 Beclin1 之间的这种相互作用使自噬抑制因子 Bcl-2 从 Beclin1 上解离,从而激活 LC3 非依赖性和 Rab9 依赖性替代自噬。晚期内体和溶酶体 TMEM9 显然与 Rab9 而不是 LC3 共定位。此外,我们表明,TMEM9 的多种糖基化对于溶酶体定位是必需的,对于其与 Beclin1 的相互作用和 Rab9 依赖性替代自噬的激活也是必需的。这些发现表明 TMEM9 在 Rab9 依赖性自噬体部位募集并激活 Beclin1 复合物,从而诱导替代自噬。