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来自死海嗜盐菌的核糖体蛋白HmaS7的N端修饰和氨基酸序列以及与其他核糖体蛋白的同源性研究

N-terminal modification and amino-acid sequence of the ribosomal protein HmaS7 from Haloarcula marismortui and homology studies to other ribosomal proteins.

作者信息

Klussmann S, Franke P, Bergmann U, Kostka S, Wittmann-Liebold B

机构信息

Max-Planck-Institut für Molekulare Genetik, Abt. Wittmann, Berlin.

出版信息

Biol Chem Hoppe Seyler. 1993 May;374(5):305-12. doi: 10.1515/bchm3.1993.374.1-6.305.

Abstract

The ribosomal protein HmaS7 from the 30S subunit of the extreme halophilic archaeum Haloarcula marismortui was isolated by semi-preparative RP-HPLC. The complete amino-acid sequence of this protein was determined by automated microsequence analysis of appropriate peptide fragments from several proteinase digests. The entire protein consists of 205 amino acids with a corresponding molecular mass of 22580 Da. The modification at the amino-terminal amino acid was deblocked so that the N-terminal amino acids could be sequenced and the type of the modification was identified as an acetyl group by electrospray mass spectrometry of suitable peptides. Homology studies of HmaS7 showed similarities to ribosomal proteins derived from organisms of all three urkingdoms, such as to EcoS7, HmoS7, MvaS7, SacS7 and RatS7; due to the strong sequence homologies found within the archaebacterial ribosomal proteins we conclude that the protein sequence which was determined for S7 from Methanococcus vannielii by nucleotide sequencing of the gene should be about 20 or 30 amino acids longer than previously published (Lechner, K., Heller, G. & Böck, A. (1989) J. Mol. Evol. 29, 20-27).

摘要

通过半制备反相高效液相色谱法(RP-HPLC)从嗜盐古菌盐沼盐杆菌(Haloarcula marismortui)30S亚基中分离出核糖体蛋白HmaS7。通过对几种蛋白酶消化产生的合适肽段进行自动微量序列分析,确定了该蛋白的完整氨基酸序列。该蛋白全长由205个氨基酸组成,相应的分子量为22580道尔顿。去除了氨基末端氨基酸的修饰,以便对N端氨基酸进行测序,并通过对合适肽段的电喷雾质谱分析确定修饰类型为乙酰基。HmaS7的同源性研究表明,它与来自所有三个原核生物界生物的核糖体蛋白相似,如EcoS7、HmoS7、MvaS7、SacS7和RatS7;由于在古细菌核糖体蛋白中发现了很强的序列同源性,我们推断,通过对基因进行核苷酸测序确定的甲烷球菌(Methanococcus vannielii)S7蛋白序列应该比以前发表的长约20或30个氨基酸(Lechner, K., Heller, G. & Böck, A. (1989) J. Mol. Evol. 29, 20 - 27)。

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