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Identification and Characterization of Epp the Secreted Processing Protease for the Vibrio anguillarum EmpA Metalloprotease

机译:鳗弧菌EmpA金属蛋白酶的分泌加工蛋白酶Epp的鉴定和表征

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摘要

The zinc metalloprotease EmpA is a virulence factor for the fish pathogen Vibrio anguillarum. Previous studies demonstrated that EmpA is secreted as a 46-kDa proenzyme that is activated extracellularly by the removal of an ∼10-kDa propeptide. We hypothesized that a specific protease is responsible for processing secreted pro-EmpA into mature EmpA. To identify the protease responsible for processing pro-EmpA, a minitransposon mutagenesis (using mini-Tn10Km) clone bank of V. anguillarum was screened for reduced protease activity due to insertions in undescribed genes. One mutant with reduced protease activity was identified. The region containing the mini-Tn10Km was cloned, sequenced, and found to contain epp, an open reading frame encoding a putative protease. Further characterization of epp was done using strain M101, created by single-crossover insertional mutagenesis. Protease activity was absent in M101 cultures even when empA protease activity was induced by salmon gastrointestinal mucus. When the epp mutation was complemented with a wild-type copy of epp (M102), protease activity was restored. Western blot analysis of sterile filtered culture supernatants from wild-type (M93Sm) cells, M101 cells, and M102 cells revealed that only pro-EmpA was present in M101supernatants; both pro-EmpA and mature EmpA were detected in M93Sm and M102 supernatants. When sterile filtered culture supernatants from the empA mutant strain (M99) and M101 were mixed, protease activity was restored. Western blot analysis revealed that pro-EmpA in M101 culture supernatant was processed to mature EmpA only after mixing with M99 culture supernatant. These data show that Epp is the EmpA-processing protease.
机译:锌金属蛋白酶EmpA是鱼类病原体鳗弧菌的致病因子。以前的研究表明,EmpA是一种46 kDa的酶,通过去除10 kDa的前肽在细胞外被激活。我们假设一种特定的蛋白酶负责将分泌的EmpA加工为成熟的EmpA。为了鉴定负责加工pro-EmpA的蛋白酶,筛选了鳗gu小螺旋藻的诱变(使用mini-Tn10Km)克隆库,以寻找由于插入未描述的基因而降低的蛋白酶活性。鉴定了一种蛋白酶活性降低的突变体。克隆,测序包含mini-Tn10Km的区域,发现其中包含epp,这是一个编码推定蛋白酶的开放阅读框。使用单交叉插入诱变产生的菌株M101对epp进行了进一步表征。即使empA蛋白酶活性是由鲑鱼胃肠粘液诱导的,M101培养物中也不存在蛋白酶活性。当epp突变与野生型epp(M102)互补时,蛋白酶活性得以恢复。对来自野生型(M93Sm)细胞,M101细胞和M102细胞的无菌过滤培养物上清液进行的蛋白质印迹分析表明,M101上清液中仅存在pro-EmpA。在M93Sm和M102上清液中均检测到前EmpA和成熟EmpA。将来自empA突变菌株(M99)和M101的无菌过滤培养上清液混合后,蛋白酶活性得以恢复。蛋白质印迹分析表明,仅在与M99培养上清液混合后,M101培养上清液中的pro-EmpA才被加工为成熟的EmpA。这些数据表明,Epp是加工EmpA的蛋白酶。

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