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活体寄生锈菌蚕豆单胞锈菌的质膜H(+) -ATP酶:基因(PMA1)的分子特征及该酶在酵母中的功能表达

The plasma membrane H(+)-ATPase from the biotrophic rust fungus Uromyces fabae: molecular characterization of the gene (PMA1) and functional expression of the enzyme in yeast.

作者信息

Struck C, Siebels C, Rommel O, Wernitz M, Hahn M

机构信息

Fakultät für Biologie, Universität Konstanz, Germany.

出版信息

Mol Plant Microbe Interact. 1998 Jun;11(6):458-65. doi: 10.1094/MPMI.1998.11.6.458.

Abstract

To study the molecular basis of biotrophic nutrient uptake by plant parasitic rust fungi, the gene (Uf-PMA1) encoding the plasma membrane H(+)-ATPase from Uromyces fabae was isolated. Uf-PMA1 exists probably as a single gene. However, two nearly identical sequences were identified; the similarity apparently is due to two Uf-PMA1 alleles in the dikaryotic hyphae. Multiple Uf-PMA1 transcripts were observed during early rust development, and reduced amounts of a single Uf-PMA1 mRNA were observed in haustoria and rust-infected leaves. This is in contrast to elevated enzyme activity in haustoria compared to germinated spores (C. Struck, M. Hahn, and K. Mendgen. Fungal Genet. Biol. 20:30-35, 1996). Unexpectedly, the PMA1-encoded rust protein is more similar to H(+)-ATPases from plants (55% identity) than from ascomycetous fungi (36% identity). When the rust PMA1 cDNA was expressed in Saccharomyces cerevisiae, both the wild-type enzyme and a mutant derivative (delta 76) deleted for the 76 C-terminal amino acids were able to support growth of a yeast strain lacking its own H(+)-ATPases. Compared to the wild-type, the delta 76 mutant enzyme displayed increased affinity to ATP, a higher vanadate sensitivity, and a more alkaline pH optimum. These results indicate that the C-terminal region of the rust enzyme exhibits auto-regulatory properties.

摘要

为了研究植物寄生锈菌活体营养摄取的分子基础,我们分离了来自蚕豆单胞锈菌编码质膜H(+) - ATP酶的基因(Uf - PMA1)。Uf - PMA1可能以单基因形式存在。然而,我们鉴定出了两个几乎相同的序列;这种相似性显然是由于双核菌丝体中的两个Uf - PMA1等位基因。在锈菌发育早期观察到多个Uf - PMA1转录本,而在吸器和锈菌感染的叶片中观察到单一Uf - PMA1 mRNA的量减少。这与吸器中酶活性相比于萌发孢子有所升高形成对比(C. Struck,M. Hahn,和K. Mendgen。真菌遗传学与生物学。20:30 - 35,1996)。出乎意料的是,PMA1编码的锈菌蛋白与植物的H(+) - ATP酶(同一性为55%)比与子囊菌的H(+) - ATP酶(同一性为36%)更为相似。当锈菌PMA1 cDNA在酿酒酵母中表达时,野生型酶和缺失76个C末端氨基酸的突变衍生物(delta 76)都能够支持缺乏自身H(+) - ATP酶的酵母菌株生长。与野生型相比,delta 76突变酶对ATP的亲和力增加,对钒酸盐的敏感性更高,最适pH更偏碱性。这些结果表明锈菌酶的C末端区域具有自我调节特性。

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