Division of Biology and Biological Engineering, California Institute of Technology, Pasadena, CA 91125, USA.
Biol Open. 2022 Nov 1;11(11). doi: 10.1242/bio.059545. Epub 2022 Nov 18.
The ability to relocalize proteins to defined subcellular locations presents a powerful tool to examine protein-protein interactions that can overcome a tendency of non-targeted exogenous proteins to form inaccessible aggregates. Here, we show that a 24-amino-acid sequence from the Drosophila proapoptotic protein Hid's tail anchor (HTA) domain can target exogenous proteins to the mitochondria in Drosophila cells. We use this HTA tag to target the Drosophila centriole cartwheel protein Sas6 to the mitochondria, and show that both exogenous and endogenous Gorab can be co-recruited from the Golgi to the new mitochondrial site. This accords with our previous observation that monomeric Drosophila Gorab binds Sas6 to become centriole associated with a 50-fold greater affinity than dimeric Gorab binds Rab6 to become localized at the Golgi. Strikingly, Drosophila Sas6 can bind both Drosophila Gorab and its human GORAB ortholog, whereas human SAS6 is unable to bind either GORAB or Gorab. We discuss these findings in relation to the evolutionary conservation of Gorab and the divergence of Sas6, possibly reflecting known differences in persistence of the cartwheel in the centriole duplication cycle of fly and human cells.
将蛋白质重新定位到特定的亚细胞位置的能力为研究蛋白质-蛋白质相互作用提供了一种强大的工具,这种相互作用可以克服非靶向的外源蛋白质形成不可接近的聚集体的趋势。在这里,我们展示了来自果蝇促凋亡蛋白 Hid 的尾部锚定(HTA)结构域的 24 个氨基酸序列可以将外源蛋白质靶向到果蝇细胞的线粒体中。我们使用这个 HTA 标签将果蝇中心粒轮辐蛋白 Sas6 靶向到线粒体,并表明外源性和内源性 Gorab 都可以从高尔基体被共同招募到新的线粒体部位。这与我们之前的观察结果一致,即单体果蝇 Gorab 与 Sas6 结合成为与中心粒相关的蛋白,其亲和力比二聚体 Gorab 与 Rab6 结合成为定位于高尔基体的蛋白高 50 倍。引人注目的是,果蝇 Sas6 可以与果蝇 Gorab 和其人类 GORAB 同源物结合,而人类 SAS6 则不能与 GORAB 或 Gorab 结合。我们讨论了这些发现与 Gorab 的进化保守性以及 Sas6 的分化之间的关系,这可能反映了已知的在果蝇和人类细胞的中心粒复制周期中轮辐蛋白持久性的差异。