Fries Thomas, Betz Christian, Sohn Kai, Caesar Stefanie, Schlenstedt Gabriel, Bailer Susanne M
Universität des Saarlandes, Medizinische Biochemie und Molekularbiologie, Gebaüde 61.4, D-66421 Homburg/Saar, Germany.
J Biol Chem. 2007 Jul 6;282(27):19292-301. doi: 10.1074/jbc.M700217200. Epub 2007 May 7.
Nucleo-cytoplasmic transport of proteins is mostly mediated by specific interaction between transport receptors of the importin beta family and signal sequences present in their cargo. While several signal sequences, in particular the classical nuclear localization signal (NLS) recognized by the heterodimeric importin alpha/beta complex are well known, the signals recognized by other importin beta-like transport receptors remain to be characterized in detail. Here we present the systematic analysis of the nuclear import of Saccharomyces cerevisiae Asr1p, a nonessential alcohol-responsive Ring/PHD finger protein that shuttles between nucleus and cytoplasm but accumulates in the nucleus upon alcohol stress. Nuclear import of Asr1p is constitutive and mediated by its C-terminal domain. A short sequence comprising residues 243-280 is sufficient and necessary for active targeting to the nucleus. Moreover, the nuclear import signal is conserved from yeast to mammals. In vitro, the nuclear localization signal of Asr1p directly interacts with the importins Kap114p, Kap95p, Pse1p, Kap123p, or Kap104p, interactions that are sensitive to the presence of RanGTP. In vivo, these importins cooperate in nuclear import. Interestingly, the same importins mediate nuclear transport of histone H2A. Based on mutational analysis and sequence comparison with a region mediating nuclear import of histone H2A, we identified a novel type of NLS with the consensus sequence R/KxxL(x)(n)V/YxxV/IxK/RxxxK/R that is recognized by five yeast importins and connects them into a highly efficient network for nuclear import of proteins.
蛋白质的核质运输主要由输入蛋白β家族的运输受体与它们所运载货物中存在的信号序列之间的特异性相互作用介导。虽然几种信号序列,特别是由异二聚体输入蛋白α/β复合物识别的经典核定位信号(NLS)是众所周知的,但其他类输入蛋白β运输受体所识别的信号仍有待详细表征。在这里,我们对酿酒酵母Asr1p的核输入进行了系统分析,Asr1p是一种非必需的酒精反应性环/ PHD指蛋白,在细胞核和细胞质之间穿梭,但在酒精胁迫下会在细胞核中积累。Asr1p的核输入是组成型的,由其C末端结构域介导。一个包含243 - 280位残基的短序列对于主动靶向细胞核是充分且必要的。此外,这种核输入信号从酵母到哺乳动物都是保守的。在体外,Asr1p的核定位信号直接与输入蛋白Kap114p、Kap95p、Pse1p、Kap123p或Kap104p相互作用,这些相互作用对RanGTP的存在敏感。在体内,这些输入蛋白在核输入中协同作用。有趣的是,相同的输入蛋白介导组蛋白H2A的核运输。基于突变分析以及与介导组蛋白H2A核输入的区域进行序列比较,我们鉴定出一种新型的NLS,其共有序列为R / KxxL(x)(n)V / YxxV / IxK / RxxxK / R,该序列被五种酵母输入蛋白识别,并将它们连接成一个高效的蛋白质核输入网络。