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核糖体合成的多肽中L-丝氨酸在体内向D-丙氨酸的转化。

In vivo conversion of L-serine to D-alanine in a ribosomally synthesized polypeptide.

作者信息

Skaugen M, Nissen-Meyer J, Jung G, Stevanovic S, Sletten K, Inger C, Abildgaard M, Nes I F

机构信息

Laboratory of Microbial Gene Technology, Agricultural University of Norway, As.

出版信息

J Biol Chem. 1994 Nov 4;269(44):27183-5.

PMID:7961627
Abstract

In the course of characterizing the bacteriocin lactocin S and its encoding gene, we discovered three alanine-for-serine substitutions which, apparently, is a violation of the genetic code. Subsequent chiral analysis of lactocin S hydrolysates revealed a correlation between D-alanine content and the three substitutions, implying a conversion of L-serine to D-alanine in lactocin S maturation. In order to explain this observation, we suggest a sequence of events initiated by the dehydration of serine, which is common in the biosynthesis of the lanthionine-containing polycyclic lantibiotics (Schnell, N., Entian, K.-D., Schneider, U., Götz, F., Zähner, H., Kellner, R. & Jung, G. (1988) Nature 333, 276-278; Jung, G. (1991) Angew, Chem. Int. Ed. Engl. 30, 1051-1068; Bierbaum, G. & Sahl, H.-G. (1993) Zentralbl. Bakteriol. 278, 1-22) and completed by the stereospecific reduction of dehydroalanine residues. The occurrence of non-lanthionine alpha-carbon stereoinversion in lactocin S maturation substantiates the hypothetical alpha-epimerization scheme originally put forward by Bycroft (Bycroft, B. W. (1969) Nature 224, 595-597), and we propose a revision of this model to accommodate the lactocin S-type stereoinversion. Lactocin S is the first prokaryotic exception to the rule that only L-amino acids are included in ribosomally synthesized peptides.

摘要

在对细菌素乳酸乳球菌素S及其编码基因进行表征的过程中,我们发现了三个丝氨酸被丙氨酸取代的情况,这显然违反了遗传密码。随后对乳酸乳球菌素S水解产物的手性分析表明,D - 丙氨酸含量与这三个取代之间存在关联,这意味着在乳酸乳球菌素S成熟过程中L - 丝氨酸转化为了D - 丙氨酸。为了解释这一现象,我们提出了一系列事件,起始于丝氨酸的脱水反应,这在含羊毛硫氨酸的多环羊毛硫抗生素的生物合成中很常见(施内尔,N.,恩蒂安,K.-D.,施奈德,U.,戈茨,F.,察纳,H.,凯尔纳,R. & 荣格,G.(1988年)《自然》333卷,276 - 278页;荣格,G.(1991年)《德国应用化学》国际版英文刊30卷,1051 - 1068页;比尔鲍姆,G. & 萨尔,H.-G.(1993年)《中央细菌学杂志》278卷,1 - 22页),并以脱氢丙氨酸残基的立体特异性还原反应告终。乳酸乳球菌素S成熟过程中发生的非羊毛硫氨酸α - 碳立体异构化证实了拜克罗夫特最初提出的假设性α - 差向异构化方案(拜克罗夫特,B. W.(1969年)《自然》224卷,595 - 597页),并且我们提出对该模型进行修订以适应乳酸乳球菌素S型立体异构化。乳酸乳球菌素S是核糖体合成肽中仅包含L - 氨基酸这一规则的首个原核生物例外情况。

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