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对组氨酸426发生突变的外毒素A蛋白进行结构-功能分析。

Structure-function analysis of exotoxin A proteins with mutations at histidine 426.

作者信息

Wick M J, Cook J M, Iglewski B H

机构信息

Department of Microbiology and Immunology, University of Rochester School of Medicine and Dentistry, New York 14642.

出版信息

Infect Immun. 1992 Mar;60(3):1128-39. doi: 10.1128/iai.60.3.1128-1139.1992.

DOI:10.1128/iai.60.3.1128-1139.1992
PMID:1541528
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC257604/
Abstract

Substitution of Tyr for His-426 of Pseudomonas aeruginosa exotoxin A results in a mutant protein with reduced ADP-ribosyltransferase activity (M. J. Wick and B. H. Iglewski, J. Bacteriol. 170:5385-5388, 1988). To investigate the role of His-426 in enzymatic activity, oligonucleotide-directed mutagenesis was used to construct mutant proteins encoding Ala, Glu, Gly, Lys, or Pro at position 426. The effect of these amino acid substitutions on ADP-ribosyltransferase activity was analyzed in 34,000-Da carboxy-terminal exotoxin A peptides (H426n peptides). ADP-ribosyltransferase activity of the H426n peptides fell within a range between 0.002 and 28% of wild-type levels of activity, suggesting that His-426 is required for full expression of enzymatic activity of exotoxin A. To investigate a possible catalytic function of His-426, the abilities of full-size (66,000-Da) wild-type exotoxin A and mutant proteins encoding either Ala-426 or Tyr-426 to hydrolyze NAD were compared by measuring NAD-glycohydrolase activity. This analysis revealed that exotoxin A encoding either Ala-426 or Tyr-426 expressed less than 1% of wild-type levels of NAD-glycohydrolase activity. Several criteria, including differential enzymatic activation properties and unique tryptic digestion patterns, revealed that the wild-type and mutant full-size proteins exhibit conformational differences. Our data suggest that His-426 plays a critical structural role in establishing the molecular architecture of the catalytic site in domain III and is important in orienting active-site residues in the cleft.

摘要

将铜绿假单胞菌外毒素A的组氨酸-426替换为酪氨酸会产生一种ADP核糖基转移酶活性降低的突变蛋白(M. J. 威克和B. H. 伊格莱夫斯基,《细菌学杂志》170:5385 - 5388,1988年)。为了研究组氨酸-426在酶活性中的作用,使用寡核苷酸定向诱变构建在第426位编码丙氨酸、谷氨酸、甘氨酸、赖氨酸或脯氨酸的突变蛋白。在34,000道尔顿的羧基末端外毒素A肽(H426n肽)中分析了这些氨基酸替换对ADP核糖基转移酶活性的影响。H426n肽的ADP核糖基转移酶活性在野生型活性水平的0.002%至28%之间,这表明组氨酸-426是外毒素A酶活性充分表达所必需的。为了研究组氨酸-426可能的催化功能,通过测量NAD糖水解酶活性比较了全长(66,000道尔顿)野生型外毒素A以及编码丙氨酸-426或酪氨酸-426的突变蛋白水解NAD的能力。该分析表明,编码丙氨酸-426或酪氨酸-426的外毒素A表达的NAD糖水解酶活性低于野生型水平的1%。包括差异酶激活特性和独特的胰蛋白酶消化模式在内的几个标准表明,野生型和突变型全长蛋白表现出构象差异。我们的数据表明,组氨酸-426在建立结构域III催化位点的分子结构中起关键的结构作用,并且在使裂隙中的活性位点残基定向方面很重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5784/257604/1b15750a5d3c/iai00027-0427-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5784/257604/e83085d1193c/iai00027-0425-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5784/257604/2bbff119ee04/iai00027-0426-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5784/257604/1b15750a5d3c/iai00027-0427-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5784/257604/e83085d1193c/iai00027-0425-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5784/257604/2bbff119ee04/iai00027-0426-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5784/257604/1b15750a5d3c/iai00027-0427-a.jpg

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本文引用的文献

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Infect Immun. 1980 Jun;28(3):899-908. doi: 10.1128/iai.28.3.899-908.1980.
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A quantitative dot-immunobinding assay for proteins using nitrocellulose membrane filters.一种使用硝酸纤维素膜滤器对蛋白质进行定量斑点免疫结合测定的方法。
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The pUC plasmids, an M13mp7-derived system for insertion mutagenesis and sequencing with synthetic universal primers.
pUC质粒,一种源自M13mp7的用于插入诱变和使用合成通用引物进行测序的系统。
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