Grandi P, Schlaich N, Tekotte H, Hurt E C
EMBL, Heidelberg, Germany.
EMBO J. 1995 Jan 3;14(1):76-87. doi: 10.1002/j.1460-2075.1995.tb06977.x.
Nic96p has been isolated previously in a complex together with the nuclear pore proteins Nsp1p, Nup49p and a p54 polypeptide. In a genetic screen for Nsp1p-interacting components, we now find NIC96, as well as a novel gene NUP57 which encodes the p54 protein (called Nup57p). Nup57p which is essential for cell growth contains GLFG repeats in the N-terminal half and heptad repeats in the C-terminal half. The domain organization of Nic96p is more complex: N-terminally located heptad repeats mediate binding to a trimeric Nsp1p-Nup49p-Nup57p complex, but are not required for the formation of this core complex; single amino acid substitutions in the central domain yield thermosensitive mutants, which do not impair interaction with the Nsp1 complex; the C-terminal domain is neither essential nor required for binding to the nucleoporin complex, but strikingly mutations in this part cause synthetic lethality with nsp1 and nup57 mutant alleles. Since a strain in which the Nic96p heptad repeats were deleted shows, similar to nsp1 and nup49 mutants, cytoplasmic mislocalization of a nuclear reporter protein, we propose that the interaction of the heterotrimeric Nsp1p-Nup49p-Nup57p core complex with Nic96p is required for protein transport into the nucleus.
Nic96p先前已与核孔蛋白Nsp1p、Nup49p和一种p54多肽一起在一个复合物中被分离出来。在一项针对与Nsp1p相互作用成分的遗传筛选中,我们现在发现了NIC96,以及一个编码p54蛋白(称为Nup57p)的新基因NUP57。对细胞生长至关重要的Nup57p在N端一半含有GLFG重复序列,在C端一半含有七肽重复序列。Nic96p的结构域组织更为复杂:位于N端的七肽重复序列介导与三聚体Nsp1p-Nup49p-Nup57p复合物的结合,但不是形成该核心复合物所必需的;中央结构域中的单个氨基酸取代产生温度敏感突变体,这并不损害与Nsp1复合物的相互作用;C端结构域对于与核孔蛋白复合物的结合既不是必需的也不被需要,但引人注目的是,这部分的突变会与nsp1和nup57突变等位基因导致合成致死性。由于缺失Nic96p七肽重复序列的菌株显示,与nsp1和nup49突变体类似,核报告蛋白在细胞质中定位错误,我们提出异三聚体Nsp1p-Nup49p-Nup57p核心复合物与Nic96p的相互作用是蛋白质转运到细胞核所必需的。