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真养产碱杆菌染色体编码的核酮糖-1,5-二磷酸羧化酶大亚基和小亚基基因及其基因产物的序列分析。

Sequence analysis of the Alcaligenes eutrophus chromosomally encoded ribulose bisphosphate carboxylase large and small subunit genes and their gene products.

作者信息

Andersen K, Caton J

机构信息

Calgene Inc., Davis, California 95616.

出版信息

J Bacteriol. 1987 Oct;169(10):4547-58. doi: 10.1128/jb.169.10.4547-4558.1987.

Abstract

The nucleotide sequence of the chromosomally encoded ribulose bisphosphate carboxylase/oxygenase (RuBPCase) large (rbcL) and small (rbcS) subunit genes of the hydrogen bacterium Alcaligenes eutrophus ATCC 17707 was determined. We found that the two coding regions are separated by a 47-base-pair intergenic region, and both genes are preceded by plausible ribosome-binding sites. Cotranscription of the rbcL and rbcS genes has been demonstrated previously. The rbcL and rbcS genes encode polypeptides of 487 and 135 amino acids, respectively. Both genes exhibited similar codon usage which was highly biased and different from that of other organisms. The N-terminal amino acid sequence of both subunit proteins was determined by Edman degradation. No processing of the rbcS protein was detected, while the rbcL protein underwent a posttranslational loss of formylmethionyl. The A. eutrophus rbcL and rbcS proteins exhibited 56.8 to 58.3% and 35.6 to 38.5% amino acid sequence homology, respectively, with the corresponding proteins from cyanobacteria, eucaryotic algae, and plants. The A. eutrophus and Rhodospirillum rubrum rbcL proteins were only about 32% homologous. The N- and C-terminal sequences of both the rbcL and the rbcS proteins were among the most divergent regions. Known or proposed active site residues in other rbcL proteins, including Lys, His, Arg, and Asp residues, were conserved in the A. eutrophus enzyme. The A. eutrophus rbcS protein, like those of cyanobacteria, lacks a 12-residue internal sequence that is found in plant RuBPCase. Comparison of hydropathy profiles and secondary structure predictions by the method described by Chou and Fasman (P. Y. Chou and G. D. Fasman, Adv. Enzymol. 47:45-148, 1978) revealed striking similarities between A. eutrophus RuBPCase and other hexadecameric enzymes. This suggests that folding of the polypeptide chains is similar. The observed sequence homologies were consistent with the notion that both the rbcL and rbcS genes of the chemoautotroph A. eutrophus and the thus far characterized rbc genes of photosynthetic organisms have a common origin. This suggests that both subunit genes have a very ancient origin. The role of quaternary structure as a determinant of the rate of accepted amino acid substitution was examined. It is proposed that the sequence of the dimeric R. rubrum RuBPCase may be less conserved because there are fewer structural constraints for this RuBPCase than there are for hexadecameric enzymes.

摘要

测定了嗜碱产碱杆菌ATCC 17707染色体编码的核酮糖二磷酸羧化酶/加氧酶(RuBPCase)大亚基(rbcL)和小亚基(rbcS)基因的核苷酸序列。我们发现这两个编码区被一个47个碱基对的基因间隔区隔开,并且两个基因之前都有合理的核糖体结合位点。rbcL和rbcS基因的共转录先前已得到证实。rbcL和rbcS基因分别编码487和135个氨基酸的多肽。两个基因都表现出相似的密码子使用情况,这种情况高度偏向且与其他生物不同。通过埃德曼降解法测定了两个亚基蛋白的N端氨基酸序列。未检测到rbcS蛋白的加工过程,而rbcL蛋白在翻译后发生了甲酰甲硫氨酰的丢失。嗜碱产碱杆菌的rbcL和rbcS蛋白与来自蓝细菌、真核藻类和植物的相应蛋白分别表现出56.8%至58.3%和35.6%至38.5%的氨基酸序列同源性。嗜碱产碱杆菌和红螺菌的rbcL蛋白仅约32%同源。rbcL和rbcS蛋白的N端和C端序列是差异最大的区域之一。其他rbcL蛋白中已知或推测的活性位点残基,包括赖氨酸、组氨酸、精氨酸和天冬氨酸残基,在嗜碱产碱杆菌的酶中是保守的。嗜碱产碱杆菌的rbcS蛋白与蓝细菌的rbcS蛋白一样,缺少植物RuBPCase中发现的一个12个残基的内部序列。通过Chou和Fasman(P.Y.Chou和G.D.Fasman,Adv.Enzymol.47:45 - 148,1978)描述的方法对亲水性图谱和二级结构预测进行比较,发现嗜碱产碱杆菌RuBPCase与其他十六聚体酶之间存在显著相似性。这表明多肽链的折叠是相似的。观察到的序列同源性与以下观点一致,即化能自养菌嗜碱产碱杆菌的rbcL和rbcS基因以及光合生物中迄今已鉴定的rbc基因有共同的起源。这表明两个亚基基因有非常古老的起源。研究了四级结构作为可接受氨基酸取代速率决定因素的作用。有人提出,红螺菌二聚体RuBPCase的序列可能保守性较差,因为这种RuBPCase的结构限制比十六聚体酶少。

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