Richardson Brian C, Halaby Steve L, Gustafson Margaret A, Fromme J Christopher
Department of Molecular Biology and Genetics, Cornell University, Ithaca, United States.
Weill Institute for Cell and Molecular Biology, Cornell University, Ithaca, United States.
Elife. 2016 Jan 14;5:e12411. doi: 10.7554/eLife.12411.
The Golgi complex is the central sorting compartment of eukaryotic cells. Arf guanine nucleotide exchange factors (Arf-GEFs) regulate virtually all traffic through the Golgi by activating Arf GTPase trafficking pathways. The Golgi Arf-GEFs contain multiple autoregulatory domains, but the precise mechanisms underlying their function remain largely undefined. We report a crystal structure revealing that the N-terminal DCB and HUS regulatory domains of the Arf-GEF Sec7 form a single structural unit. We demonstrate that the established role of the N-terminal region in dimerization is not conserved; instead, a C-terminal autoinhibitory domain is responsible for dimerization of Sec7. We find that the DCB/HUS domain amplifies the ability of Sec7 to activate Arf1 on the membrane surface by facilitating membrane insertion of the Arf1 amphipathic helix. This enhancing function of the Sec7 N-terminal domains is consistent with the high rate of Arf1-dependent trafficking to the plasma membrane necessary for maximal cell growth.
高尔基体复合体是真核细胞的中央分选区室。Arf鸟嘌呤核苷酸交换因子(Arf-GEFs)通过激活Arf GTPase运输途径来调节几乎所有通过高尔基体的运输。高尔基体Arf-GEFs包含多个自调节结构域,但其功能的精确机制在很大程度上仍不明确。我们报道了一种晶体结构,揭示了Arf-GEF Sec7的N端DCB和HUS调节结构域形成一个单一的结构单元。我们证明,N端区域在二聚化中已确定的作用并不保守;相反,一个C端自抑制结构域负责Sec7的二聚化。我们发现,DCB/HUS结构域通过促进Arf1两亲性螺旋的膜插入来增强Sec7在膜表面激活Arf1的能力。Sec7 N端结构域的这种增强功能与最大细胞生长所需的依赖Arf1运输到质膜的高速率一致。