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来自梨火疫病菌噬菌体和梨火疫病菌基因组的溶菌酶表达及受一种细菌蛋白的抑制作用

Expression of lysozymes from Erwinia amylovora phages and Erwinia genomes and inhibition by a bacterial protein.

作者信息

Müller Ina, Gernold Marina, Schneider Bernd, Geider Klaus

机构信息

Julius Kühn-Institut, Institut für Pflanzenschutz in Obst- und Weinbau, Dossenheim, Deutschland.

出版信息

J Mol Microbiol Biotechnol. 2012;22(1):59-70. doi: 10.1159/000335878. Epub 2012 Mar 27.

Abstract

Genes coding for lysozyme-inhibiting proteins (Ivy) were cloned from the chromosomes of the plant pathogens Erwinia amylovora and Erwinia pyrifoliae. The product interfered not only with activity of hen egg white lysozyme, but also with an enzyme from E. amylovora phage ΦEa1h. We have expressed lysozyme genes from the genomes of three Erwinia species in Escherichia coli. The lysozymes expressed from genes of the E. amylovora phages ΦEa104 and ΦEa116, Erwinia chromosomes and Arabidopsis thaliana were not affected by Ivy. The enzyme from bacteriophage ΦEa1h was fused at the N- or C-terminus to other peptides. Compared to the intact lysozyme, a His-tag reduced its lytic activity about 10-fold and larger fusion proteins abolished activity completely. Specific protease cleavage restored lysozyme activity of a GST-fusion. The bacteriophage-encoded lysozymes were more active than the enzymes from bacterial chromosomes. Viral lyz genes were inserted into a broad-host range vector, and transfer to E. amylovora inhibited cell growth. Inserted in the yeast Pichia pastoris, the ΦEa1h-lysozyme was secreted and also inhibited by Ivy. Here we describe expression of unrelated cloned 'silent' lyz genes from Erwinia chromosomes and a novel interference of bacterial Ivy proteins with a viral lysozyme.

摘要

从植物病原菌梨火疫病菌(Erwinia amylovora)和梨叶火疫病菌(Erwinia pyrifoliae)的染色体中克隆出编码溶菌酶抑制蛋白(Ivy)的基因。该产物不仅干扰鸡蛋清溶菌酶的活性,还干扰来自梨火疫病菌噬菌体ΦEa1h的一种酶的活性。我们已经在大肠杆菌中表达了来自三种欧文氏菌属物种基因组的溶菌酶基因。从梨火疫病菌噬菌体ΦEa104和ΦEa116、梨火疫病菌染色体以及拟南芥基因中表达的溶菌酶不受Ivy的影响。来自噬菌体ΦEa1h的酶在N端或C端与其他肽融合。与完整的溶菌酶相比,His标签使其裂解活性降低约10倍,而更大的融合蛋白则完全消除了活性。特异性蛋白酶切割恢复了GST融合蛋白的溶菌酶活性。噬菌体编码的溶菌酶比来自细菌染色体的酶更具活性。将病毒溶菌酶基因插入广宿主范围载体并转移到梨火疫病菌中会抑制细胞生长。插入酵母毕赤酵母(Pichia pastoris)中后,ΦEa1h溶菌酶会分泌出来,并且也会受到Ivy的抑制。在这里,我们描述了来自梨火疫病菌染色体的不相关克隆“沉默”溶菌酶基因的表达以及细菌Ivy蛋白对病毒溶菌酶的一种新的干扰作用。

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