Feng Zhang, Alvarenga Omar E, Accardi Alessio
Department of Anesthesiology, Weill Cornell Medical College.
Physiology, Biophysics and Systems Biology Graduate Program, Weill Cornell Medical College.
Res Sq. 2023 Aug 18:rs.3.rs-3256633. doi: 10.21203/rs.3.rs-3256633/v1.
Activation of Ca-dependent TMEM16 scramblases induces the externalization of phosphatidylserine, a key molecule in multiple signaling processes. Current models suggest that the TMEM16s scramble lipids by deforming the membrane near a hydrophilic groove, and that Ca dependence arises from the different association of lipids with an open or closed groove. However, the molecular rearrangements involved in groove opening and of how lipids reorganize outside the closed groove remain unknown. Using cryogenic electron microscopy, we directly visualize how lipids associate at the closed groove of Ca-bound nhTMEM16 in nanodiscs. Functional experiments pinpoint the lipid-protein interaction sites critical for closed groove scrambling. Structural and functional analyses suggest groove opening entails the sequential appearance of two π-helical turns in the groove-lining TM6 helix and identify critical rearrangements. Finally, we show that the choice of scaffold protein and lipids affects the conformations of nhTMEM16 and their distribution, highlighting a key role of these factors in cryoEM structure determination.
钙依赖性跨膜蛋白16(TMEM16)翻转酶的激活会诱导磷脂酰丝氨酸外化,磷脂酰丝氨酸是多种信号传导过程中的关键分子。目前的模型表明,TMEM16通过使亲水槽附近的膜变形来翻转脂质,并且钙依赖性源于脂质与开放或封闭槽的不同结合。然而,参与槽开放的分子重排以及脂质在封闭槽外如何重新组织仍然未知。使用低温电子显微镜,我们直接观察了脂质如何在纳米盘中与钙结合的nhTMEM16的封闭槽处结合。功能实验确定了对封闭槽翻转至关重要的脂-蛋白相互作用位点。结构和功能分析表明,槽开放需要在槽内衬TM6螺旋中依次出现两个π螺旋转角,并确定关键的重排。最后,我们表明支架蛋白和脂质的选择会影响nhTMEM16的构象及其分布,突出了这些因素在低温电子显微镜结构测定中的关键作用。