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关于大肠杆菌素E1体外活性对酸性pH要求的解释。Glu-468位点的定点诱变。

On the explanation of the acidic pH requirement for in vitro activity of colicin E1. Site-directed mutagenesis at Glu-468.

作者信息

Shiver J W, Cramer W A, Cohen F S, Bishop L J, de Jong P J

机构信息

Department of Biological Sciences, Purdue University, West Lafayette, Indiana 47907.

出版信息

J Biol Chem. 1987 Oct 15;262(29):14273-81.

PMID:2443503
Abstract

The in vitro acidic pH dependence of colicin E1 channel activity was investigated by directed mutagenesis of Glu-468 in the colicin E1 channel domain, a residue conserved in the sequences of the four channel-forming colicins examined so far. Mutations were made to the amino acids leucine, serine, glutamine, or lysine, residues of different polarity and charge. All of the mutant polypeptides possessed high cytotoxic activity in vivo, although in vitro activity, especially with planar membranes, was lower than that of the wild type protein. A change in the in vitro acidic pH dependence of activity could be readily detected in the mutation to the hydrophobic leucine residue. The dependence of mutant activity on pH in the interval 3.5-5.0 was markedly smaller than that of the wild type, whether assayed on membrane vesicles or membrane bilayers. Differences in pH dependence between the wild type and the polar serine and glutamine mutants were small or of marginal statistical significance. No change in pH dependence could be detected with the charged lysine mutant. The residual pH dependence in all cases indicated that more than one carboxylic residue must be protonated to account for the increased activity at acidic pH values. A role of Glu-468 in the mechanism of channel formation or function was implied by the changes determined in vitro of channel parameters relative to the wild type: (i) the relatively small rates of current increase measured for colicin COOH-terminal peptide derived from the mutants, (ii) the small values of steady-state conductance of mutant peptide at pH 3.5, and (iii) the reduced anion selectivity of peptide from the serine mutant.

摘要

通过对大肠杆菌素E1通道结构域中的Glu-468进行定向诱变,研究了大肠杆菌素E1通道活性的体外酸性pH依赖性,Glu-468是迄今为止所研究的四种形成通道的大肠杆菌素序列中保守的一个残基。将其突变为亮氨酸、丝氨酸、谷氨酰胺或赖氨酸,这些氨基酸具有不同的极性和电荷。所有突变多肽在体内均具有高细胞毒性活性,尽管其体外活性,尤其是在平面膜上的活性低于野生型蛋白。在突变为疏水性亮氨酸残基时,可以很容易地检测到活性的体外酸性pH依赖性发生了变化。无论在膜囊泡还是膜双分子层上进行测定,突变体活性在3.5 - 5.0区间内对pH的依赖性明显小于野生型。野生型与极性丝氨酸和谷氨酰胺突变体之间在pH依赖性上的差异很小或具有边际统计学意义。带电荷的赖氨酸突变体未检测到pH依赖性的变化。所有情况下残留的pH依赖性表明,必须有不止一个羧基残基质子化才能解释在酸性pH值下活性增加的现象。相对于野生型,体外测定的通道参数变化暗示了Glu-468在通道形成或功能机制中的作用:(i) 从突变体衍生的大肠杆菌素COOH末端肽的电流增加速率相对较小,(ii) 突变肽在pH 3.5时的稳态电导值较小,以及(iii) 丝氨酸突变体肽的阴离子选择性降低。

相似文献

1
On the explanation of the acidic pH requirement for in vitro activity of colicin E1. Site-directed mutagenesis at Glu-468.关于大肠杆菌素E1体外活性对酸性pH要求的解释。Glu-468位点的定点诱变。
J Biol Chem. 1987 Oct 15;262(29):14273-81.
2
Decrease of anion selectivity caused by mutation of Thr501 and Gly502 to Glu in the hydrophobic domain of the colicin E1 channel.
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Biochemistry. 1988 Nov 1;27(22):8421-8. doi: 10.1021/bi00422a019.
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Alteration of the pH-dependent ion selectivity of the colicin E1 channel by site-directed mutagenesis.通过定点诱变改变大肠杆菌素E1通道的pH依赖性离子选择性。
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A very short peptide makes a voltage-dependent ion channel: the critical length of the channel domain of colicin E1.一种非常短的肽构成了一个电压依赖性离子通道:大肠杆菌素E1通道结构域的关键长度。
Proteins. 1986 Nov;1(3):218-29. doi: 10.1002/prot.340010304.
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Comparison of the macroscopic and single channel conductance properties of colicin E1 and its COOH-terminal tryptic peptide.大肠杆菌素E1及其COOH末端胰蛋白酶肽的宏观和单通道电导特性比较。
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Site-directed mutagenesis of the COOH-terminal region of colicin A: effect on secretion and voltage-dependent channel activity.大肠杆菌素A羧基末端区域的定点诱变:对分泌及电压依赖性通道活性的影响
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Site-specific biotinylation of colicin Ia. A probe for protein conformation in the membrane.大肠菌素Ia的位点特异性生物素化。一种用于研究膜中蛋白质构象的探针。
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Intramembrane helix-helix interactions as the basis of inhibition of the colicin E1 ion channel by its immunity protein.膜内螺旋-螺旋相互作用作为大肠杆菌素E1免疫蛋白抑制其离子通道的基础。
J Biol Chem. 1993 May 15;268(14):10176-84.

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Proc Natl Acad Sci U S A. 1988 Oct;85(20):7531-5. doi: 10.1073/pnas.85.20.7531.
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