Ye L, Sugiura M
Center for Gene Research, Nagoya University, Japan.
Nucleic Acids Res. 1992 Dec 11;20(23):6275-9. doi: 10.1093/nar/20.23.6275.
Five ribonucleoproteins (or RNA-binding proteins) from tobacco chloroplasts have been identified to date; each of these contains an acidic N-terminal domain (24-64 amino acids) and two conserved RNA-binding domains (82-83 amino acids). All five ribonucleoproteins can bind to ssDNA and dsDNA but show high specificity for poly(G) and poly(U). Here we present the nucleic acid binding activity of each domain using a series of deletion mutant proteins made in vitro from the chloroplast 29 kDa ribonucleoproteins. The acidic domain does not have a positive effect on binding activities and proteins lacking this domain show higher affinities for nucleic acids than the wild-type proteins. Mutant proteins containing single RNA-binding domains can bind to poly(G) and poly(U), though with lower affinities than proteins containing two RNA-binding domains. The spacer region (11-37 amino acids) between the two RNA-binding domains does not interact with poly(G) or poly(U) by itself, but is required for the additive activity of the two RNA-binding domains. Proteins consisting of two RNA-binding domains but lacking the spacer have the same activity as those containing only one RNA-binding domain. Possible roles for each domain in chloroplast ribonucleoproteins are discussed.
到目前为止,已鉴定出烟草叶绿体中的五种核糖核蛋白(或RNA结合蛋白);其中每种都含有一个酸性N端结构域(24 - 64个氨基酸)和两个保守的RNA结合结构域(82 - 83个氨基酸)。所有这五种核糖核蛋白都能与单链DNA和双链DNA结合,但对聚(G)和聚(U)具有高度特异性。在这里,我们使用一系列从叶绿体29 kDa核糖核蛋白体外制备的缺失突变蛋白,展示了每个结构域的核酸结合活性。酸性结构域对结合活性没有积极影响,缺少该结构域的蛋白对核酸的亲和力高于野生型蛋白。含有单个RNA结合结构域的突变蛋白可以与聚(G)和聚(U)结合,但其亲和力低于含有两个RNA结合结构域的蛋白。两个RNA结合结构域之间的间隔区(11 - 37个氨基酸)本身不与聚(G)或聚(U)相互作用,但对于两个RNA结合结构域的加性活性是必需的。由两个RNA结合结构域但缺少间隔区组成的蛋白与仅含有一个RNA结合结构域的蛋白具有相同的活性。文中讨论了叶绿体核糖核蛋白中每个结构域可能的作用。