Reddy M K, Nair S, Singh B N, Mudgil Y, Tewari K K, Sopory S K
International Centre for Genetic Engineering and Biotechnology (ICGEB), Aruna Asaf Ali Marg, New Delhi 110 067, India.
Gene. 2001 Jan 24;263(1-2):179-87. doi: 10.1016/s0378-1119(00)00574-6.
We report the cloning and sequencing of both cDNA and genomic DNA of a 33 kDa chloroplast ribonucleoprotein (33RNP) from pea. The analysis of the predicted amino acid sequence of the cDNA clone revealed that the encoded protein contains two RNA binding domains, including the conserved consensus ribonucleoprotein sequences CS-RNP1 and CS-RNP2, on the C-terminus half and the presence of a putative transit peptide sequence in the N-terminus region. The phylogenetic and multiple sequence alignment analysis of pea chloroplast RNP along with RNPs reported from the other plant sources revealed that the pea 33RNP is very closely related to Nicotiana sylvestris 31RNP and 28RNP and also to 31RNP and 28RNP of Arabidopsis and spinach, respectively. The pea 33RNP was expressed in Escherichia coli and purified to homogeneity. The in vitro import of precursor protein into chloroplasts confirmed that the N-terminus putative transit peptide is a bona fide transit peptide and 33RNP is localized in the chloroplast. The nucleic acid-binding properties of the recombinant protein, as revealed by South-Western analysis, showed that 33RNP has higher binding affinity for poly (U) and oligo dT than for ssDNA and dsDNA. The steady state transcript level was higher in leaves than in roots and the expression of this gene is light stimulated. Sequence analysis of the genomic clone revealed that the gene contains four exons and three introns. We have also isolated and analyzed the 5' flanking region of the pea 33RNP gene.
我们报道了豌豆中一种33 kDa叶绿体核糖核蛋白(33RNP)的cDNA和基因组DNA的克隆及测序。对cDNA克隆预测的氨基酸序列分析表明,编码的蛋白质在C端后半部分含有两个RNA结合结构域,包括保守的共有核糖核蛋白序列CS - RNP1和CS - RNP2,并且在N端区域存在一个推定的转运肽序列。对豌豆叶绿体RNP与其他植物来源报道的RNP进行系统发育和多序列比对分析表明,豌豆33RNP与林烟草31RNP和28RNP以及拟南芥和菠菜的31RNP和28RNP分别密切相关。豌豆33RNP在大肠杆菌中表达并纯化至同质。前体蛋白体外导入叶绿体证实,N端推定的转运肽是一个真正的转运肽,且33RNP定位于叶绿体中。South - Western分析显示,重组蛋白的核酸结合特性表明,33RNP对聚(U)和寡聚dT的结合亲和力高于对单链DNA和双链DNA的结合亲和力。稳态转录水平在叶片中高于根中,且该基因的表达受光刺激。基因组克隆的序列分析表明该基因包含四个外显子和三个内含子。我们还分离并分析了豌豆33RNP基因的5'侧翼区域。