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烟草叶绿体中核糖核蛋白家族的多样性:两种新的叶绿体核糖核蛋白及十个叶绿体RNA结合结构域的系统发育树

Diversity of a ribonucleoprotein family in tobacco chloroplasts: two new chloroplast ribonucleoproteins and a phylogenetic tree of ten chloroplast RNA-binding domains.

作者信息

Ye L H, Li Y Q, Fukami-Kobayashi K, Go M, Konishi T, Watanabe A, Sugiura M

机构信息

Center for Gene Research, Nagoya University, Japan.

出版信息

Nucleic Acids Res. 1991 Dec 11;19(23):6485-90. doi: 10.1093/nar/19.23.6485.

Abstract

Two new ribonucleoproteins (RNPs) have been identified from a tobacco chloroplast lysate. These two proteins (cp29A and cp29B) are nuclear-encoded and have a less affinity to single-stranded DNA as compared with three other chloroplast RNPs (cp28, cp31 and cp33) previously isolated. DNA sequencing revealed that both contain two consensus sequence-type homologous RNA-binding domains (CS-RBDs) and a very acidic amino-terminal domain but shorter than that of cp28, cp31 and cp33. Comparison of cp29A and cp29B showed a 19 amino acid insertion in the region separating the two CS-RBDs in cp29B. This insertion results in three tandem repeats of a glycine-rich sequence of 10 amino acids, which is a novel feature in RNPs. The two proteins are encoded by different single nuclear genes and no alternatively spliced transcripts could be identified. We constructed a phylogenetic tree for the ten chloroplast CS-RBDs. These results suggest that there is a sizable RNP family in chloroplasts and the diversity was mainly generated through a series of gene duplications rather than through alternative pre-mRNA splicing. The gene for cp29B contains three introns. The first and second introns interrupt the first CS-RBD and the third intron does the second CS-RBD. The position of the first intron site is the same as that in the human hnRNP A1 protein gene.

摘要

从烟草叶绿体裂解物中鉴定出两种新的核糖核蛋白(RNP)。这两种蛋白质(cp29A和cp29B)是核编码的,与之前分离出的其他三种叶绿体RNP(cp28、cp31和cp33)相比,它们对单链DNA的亲和力较低。DNA测序显示,两者都含有两个共有序列型同源RNA结合结构域(CS-RBD)和一个非常酸性的氨基末端结构域,但比cp28、cp31和cp33的短。cp29A和cp29B的比较表明,cp29B在分隔两个CS-RBD的区域有19个氨基酸的插入。这种插入导致了一个由10个氨基酸组成的富含甘氨酸序列的三个串联重复,这是RNP中的一个新特征。这两种蛋白质由不同的单细胞核基因编码,未鉴定到可变剪接转录本。我们构建了十个叶绿体CS-RBD的系统发育树。这些结果表明,叶绿体中存在一个相当大的RNP家族,其多样性主要是通过一系列基因重复产生的,而不是通过可变前体mRNA剪接产生的。cp29B的基因包含三个内含子。第一个和第二个内含子中断第一个CS-RBD,第三个内含子中断第二个CS-RBD。第一个内含子位点的位置与人类hnRNP A1蛋白基因中的相同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc40/329204/b74aa203f2cd/nar00103-0130-a.jpg

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