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可逆受体甲基化对于大肠杆菌在天冬氨酸梯度中的正常趋化作用至关重要。

Reversible receptor methylation is essential for normal chemotaxis of Escherichia coli in gradients of aspartic acid.

作者信息

Weis R M, Koshland D E

机构信息

Department of Biochemistry, University of California, Berkeley 94720.

出版信息

Proc Natl Acad Sci U S A. 1988 Jan;85(1):83-7. doi: 10.1073/pnas.85.1.83.

Abstract

The chemotaxis of wild-type cells of Escherichia coli and double mutants lacking the methyltransferase and the methylesterase activities of the receptor modification system has been compared in spatial gradients of aspartic acid. Previous studies showing that a chemotactic response can be observed for the mutant raised questions about the role of methylation in the bacterial memory. To clarify the role of methylation, the redistribution of bacteria in stabilized defined gradients of aspartic acid was monitored by light scattering. There was no redistribution of the mutant cells in nonsaturating gradients of aspartic acid, but over the same range these mutant bacteria were observed to respond and to adapt during tethering experiments. In large saturating gradients of aspartate, slight movement of the mutant up the gradient was observed. These results show that dynamic receptor methylation is required for the chemotactic response to gentle gradients of aspartic acid and that methylation resets to zero and is part of the normal wild-type memory. There are certain gradients, however, in which the methylation-deficient mutants show chemotactic ability, thus explaining the apparent anomaly.

摘要

在天冬氨酸的空间梯度中,对大肠杆菌野生型细胞以及缺乏受体修饰系统甲基转移酶和甲酯酶活性的双突变体的趋化性进行了比较。先前的研究表明,该突变体可观察到趋化反应,这引发了关于甲基化在细菌记忆中作用的疑问。为阐明甲基化的作用,通过光散射监测了细菌在稳定的天冬氨酸限定梯度中的重新分布。在天冬氨酸的非饱和梯度中,突变体细胞没有重新分布,但在相同范围内,这些突变细菌在系留实验中被观察到有反应并能适应。在大的饱和天冬氨酸梯度中,观察到突变体有轻微的向上梯度移动。这些结果表明,对天冬氨酸的温和梯度的趋化反应需要动态受体甲基化,并且甲基化重置为零是正常野生型记忆的一部分。然而,存在某些梯度,其中缺乏甲基化的突变体表现出趋化能力,从而解释了明显的异常现象。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/305f/279486/640177d14405/pnas00253-0100-a.jpg

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