Fry Michelle Y, Najdrová Vladimíra, Maggiolo Ailiena O, Saladi Shyam M, Doležal Pavel, Clemons William M
Division of Chemistry and Chemical Engineering, California Institute of Technology, Pasadena, CA, USA.
Department of Parasitology, Faculty of Science, BIOCEV, Charles University, Prague, Czech Republic.
Nat Struct Mol Biol. 2022 Aug;29(8):820-830. doi: 10.1038/s41594-022-00798-4. Epub 2022 Jul 18.
Tail-anchored (TA) membrane proteins, accounting for roughly 2% of proteomes, are primarily targeted posttranslationally to the endoplasmic reticulum membrane by the guided entry of TA proteins (GET) pathway. For this complicated process, it remains unknown how the central targeting factor Get3 uses nucleotide to facilitate large conformational changes to recognize then bind clients while also preventing exposure of hydrophobic surfaces. Here, we identify the GET pathway in Giardia intestinalis and present the structure of the Get3-client complex in the critical postnucleotide-hydrolysis state, demonstrating that Get3 reorganizes the client-binding domain (CBD) to accommodate and shield the client transmembrane helix. Four additional structures of GiGet3, spanning the nucleotide-free (apo) open to closed transition and the ATP-bound state, reveal the details of nucleotide stabilization and occluded CBD. This work resolves key conundrums and allows for a complete model of the dramatic conformational landscape of Get3.
尾锚定(TA)膜蛋白约占蛋白质组的2%,主要通过TA蛋白引导进入(GET)途径在翻译后靶向内质网。对于这个复杂的过程,尚不清楚核心靶向因子Get3如何利用核苷酸促进大的构象变化以识别并结合底物,同时还能防止疏水表面暴露。在这里,我们鉴定了贾第鞭毛虫中的GET途径,并展示了处于关键核苷酸水解后状态的Get3-底物复合物的结构,证明Get3重组底物结合结构域(CBD)以容纳并屏蔽底物跨膜螺旋。贾第鞭毛虫Get3的另外四个结构,涵盖从无核苷酸(脱辅基)开放到关闭转变以及ATP结合状态,揭示了核苷酸稳定和封闭CBD的细节。这项工作解决了关键难题,并得出了Get3显著构象变化全貌的完整模型。