Basic Sciences Division, Fred Hutchinson Cancer Research Center, Seattle, WA 98109, USA.
Basic Sciences Division, Fred Hutchinson Cancer Research Center, Seattle, WA 98109, USA; School of Life Sciences, Westlake University, Hangzhou, Zhejiang 310024, P.R. China; Fudan University, Shanghai 200433, P.R. China.
Dev Cell. 2022 Mar 28;57(6):750-766.e5. doi: 10.1016/j.devcel.2022.02.021. Epub 2022 Mar 17.
Curvature-sensing mechanisms assist proteins in executing particular actions on various membrane organelles. Here, we investigate the functional specificity of curvature-sensing amphipathic motifs in Caenorhabditis elegans through the study of endophilin, an endocytic protein for synaptic vesicle recycling. We generate chimeric endophilin proteins by replacing the endophilin amphipathic motif H0 with other curvature-sensing amphipathic motifs. We find that the role of amphipathic motifs cannot simply be extrapolated from the identity of their parental proteins. For example, the amphipathic motif of the nuclear pore complex protein NUP133 functionally replaces the synaptic role of endophilin H0. Interestingly, non-functional endophilin chimeras have similar defects-producing fewer synaptic vesicles but more endosomes-and this indicates that the curvature-sensing motifs in these chimeras have a common deficiency for reforming synaptic vesicles. Finally, we convert non-functional endophilin chimeras into functional proteins by changing the cationic property of amphipathic motifs, successfully reprogramming the functional specificity of curvature-sensing motifs in vivo.
曲率感应机制帮助蛋白质在各种膜细胞器上执行特定的功能。在这里,我们通过研究内吞蛋白(endophilin)来研究秀丽隐杆线虫中曲率感应两亲基序的功能特异性,内吞蛋白是用于突触囊泡再循环的内吞蛋白。我们通过用其他曲率感应两亲基序替换内吞蛋白的两亲基序 H0 来生成嵌合内吞蛋白。我们发现,两亲基序的作用不能简单地从其亲本蛋白的身份推断出来。例如,核孔复合体蛋白 NUP133 的两亲基序在功能上取代了内吞蛋白 H0 的突触作用。有趣的是,无功能的内吞蛋白嵌合体具有类似的缺陷——产生更少的突触囊泡但更多的内体——这表明这些嵌合体中的曲率感应基序在形成突触囊泡方面存在共同的缺陷。最后,我们通过改变两亲基序的阳离子特性将无功能的内吞蛋白嵌合体转化为功能蛋白,成功地在体内重新编程了曲率感应基序的功能特异性。