Teo Hsiangling, Perisic Olga, González Beatriz, Williams Roger L
MRC Laboratory of Molecular Biology, Hills Road, Cambridge CB2 2QH, United Kingdom.
Dev Cell. 2004 Oct;7(4):559-69. doi: 10.1016/j.devcel.2004.09.003.
ESCRT-I, -II, and -III protein complexes are sequentially recruited to endosomal membranes, where they orchestrate protein sorting and MVB biogenesis. In addition, they play a critical role in retrovirus budding. Structural understanding of ESCRT interaction networks is largely lacking. The 3.6 A structure of the yeast ESCRT-II core presented here reveals a trilobal complex containing two copies of Vps25, one copy of Vps22, and the C-terminal region of Vps36. Unexpectedly, the entire ESCRT-II core consists of eight repeats of a common building block, a "winged helix" domain. Two PPXY-motifs from Vps25 are involved in contacts with Vps22 and Vps36, and their mutation leads to ESCRT-II disruption. We show that purified ESCRT-II binds directly to the Vps20 component of ESCRT-III. Surprisingly, this binding does not require the protruding N-terminal coiled-coil of Vps22. Vps25 is the chief subunit responsible for Vps20 recruitment. This interaction dramatically increases binding of both components to lipid vesicles in vitro.
内体分选转运复合体(ESCRT)-I、-II和-III蛋白复合物依次被招募到内体膜上,在那里它们协调蛋白质分选和多泡体(MVB)生物发生。此外,它们在逆转录病毒出芽过程中发挥关键作用。目前对ESCRT相互作用网络的结构了解还很欠缺。此处展示的酵母ESCRT-II核心的3.6埃结构揭示了一个三叶形复合物,包含两个Vps25拷贝、一个Vps22拷贝和Vps36的C末端区域。出乎意料的是,整个ESCRT-II核心由一个共同结构单元“翼状螺旋”结构域的八个重复序列组成。来自Vps25的两个PPXY基序参与与Vps22和Vps36的接触,它们的突变会导致ESCRT-II破坏。我们发现纯化的ESCRT-II直接与ESCRT-III的Vps20组分结合。令人惊讶的是,这种结合不需要Vps22突出的N末端卷曲螺旋。Vps25是负责招募Vps20的主要亚基。这种相互作用在体外显著增加了两种组分与脂质囊泡的结合。