Ho Dona N, Coburn Glen A, Kang Yibin, Cullen Bryan R, Georgiadis Millie M
Waksman Institute and Department of Chemistry, Rutgers University, Piscataway, NJ 08854, USA.
Proc Natl Acad Sci U S A. 2002 Feb 19;99(4):1888-93. doi: 10.1073/pnas.042698599.
The Tap protein mediates the sequence nonspecific nuclear export of cellular mRNAs as well as the sequence-specific export of retroviral mRNAs bearing the constitutive transport element (CTE). Previously, the structures of individual Tap subdomains, including ribonucleoprotein and leucine-rich repeat domains, have been described. Here, we report the crystal structure of a functional CTE RNA-binding domain of human Tap, including the N-terminal arm of the ribonucleoprotein domain and interdomain linking polypeptide. To identify residues that interact with the CTE, we have introduced 38 alanine substitutions for surface residues in the Tap CTE-binding domain and tested these mutants for their ability to support CTE-dependent nuclear RNA export and CTE binding. Four residues that cluster on a concave surface in the leucine-rich repeat domain were found to be critical for CTE binding and define a CTE-interacting surface on this domain. The second critical CTE-interacting surface on Tap is defined by three previously identified residues on the surface of the ribonucleoprotein domain. The structural and mutational data define a novel RNA-binding site on the Tap protein.
Tap蛋白介导细胞mRNA的序列非特异性核输出以及携带组成型转运元件(CTE)的逆转录病毒mRNA的序列特异性输出。此前,已经描述了Tap各个亚结构域的结构,包括核糖核蛋白和富含亮氨酸的重复结构域。在此,我们报道了人Tap功能性CTE RNA结合结构域的晶体结构,包括核糖核蛋白结构域的N端臂和结构域间连接多肽。为了鉴定与CTE相互作用的残基,我们对Tap CTE结合结构域中的表面残基引入了38个丙氨酸替代,并测试了这些突变体支持CTE依赖的核RNA输出和CTE结合的能力。发现在富含亮氨酸的重复结构域凹面上聚集的四个残基对于CTE结合至关重要,并在该结构域上定义了一个CTE相互作用表面。Tap上第二个关键的CTE相互作用表面由核糖核蛋白结构域表面上先前鉴定的三个残基定义。结构和突变数据定义了Tap蛋白上一个新的RNA结合位点。