MAS Centre for Doctoral Training, University of Warwick, Coventry, CV4 7AL, UK.
Department of Chemistry, University of Warwick, Coventry, CV4 7AL, UK.
Sci Rep. 2021 Mar 18;11(1):6326. doi: 10.1038/s41598-021-85866-3.
The reticulon family of integral membrane proteins are conserved across all eukaryotes and typically localize to the endoplasmic reticulum (ER), where they are involved in generating highly-curved tubules. We recently demonstrated that Reticulon-like protein B13 (RTNLB13) from Arabidopsis thaliana contains a curvature-responsive amphipathic helix (APH) important for the proteins' ability to induce curvature in the ER membrane, but incapable of generating curvature by itself. We suggested it acts as a feedback element, only folding/binding once a sufficient degree of curvature has been achieved, and stabilizes curvature without disrupting the bilayer. However, it remains unclear whether this is unique to RTNLB13 or is conserved across all reticulons-to date, experimental evidence has only been reported for two reticulons. Here we used biophysical methods to characterize a minimal library of putative APH peptides from across the 21 A. thaliana isoforms. We found that reticulons with the closest evolutionary relationship to RTNLB13 contain curvature-sensing APHs in the same location with sequence conservation. Our data reveal that a more distantly-related branch of reticulons developed a ~ 20-residue linker between the transmembrane domain and APH. This may facilitate functional flexibility as previous studies have linked these isoforms not only to ER remodeling but other cellular activities.
网质蛋白家族的整合膜蛋白在所有真核生物中都保守,通常定位于内质网 (ER),在那里它们参与生成高度弯曲的小管。我们最近证明,来自拟南芥的网质蛋白样蛋白 B13 (RTNLB13) 含有一个对其在 ER 膜中诱导曲率的能力很重要的响应曲率的两亲性螺旋 (APH),但自身不能产生曲率。我们认为它作为一个反馈元件,只有在达到足够的曲率程度后才会折叠/结合,并且在不破坏双层的情况下稳定曲率。然而,目前尚不清楚这是否仅适用于 RTNLB13,或者是否在所有网质蛋白中保守——迄今为止,仅报道了两种网质蛋白的实验证据。在这里,我们使用生物物理方法来表征来自 21 种拟南芥同工型的潜在 APH 肽的最小文库。我们发现,与 RTNLB13 进化关系最密切的网质蛋白在相同位置含有曲率感应 APH,序列保守。我们的数据表明,网质蛋白的一个更远的分支在跨膜结构域和 APH 之间发展出了一个约 20 个残基的连接物。这可能促进了功能灵活性,因为之前的研究将这些同工型不仅与 ER 重塑联系起来,还与其他细胞活动联系起来。