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首页> 外文期刊>Applied and Environmental Microbiology >Identification and Functional Analysis of the Gene Encoding Methionine-γ-Lyase in Brevibacterium linens
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Identification and Functional Analysis of the Gene Encoding Methionine-γ-Lyase in Brevibacterium linens

机译:短杆菌属蛋氨酸-γ-裂合酶编码基因的鉴定与功能分析

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The enzymatic degradation of l-methionine and subsequent formation of volatile sulfur compounds (VSCs) is believed to be essential for flavor development in cheese. l-Methionine-γ-lyase (MGL) can convert l-methionine to methanethiol (MTL), α-ketobutyrate, and ammonia. The mgl gene encoding MGL was cloned from the type strain Brevibacterium linens ATCC 9175 known to produce copious amounts of MTL and related VSCs. The disruption of the mgl gene, achieved in strain ATCC 9175, resulted in a 62% decrease in thiol-producing activity and a 97% decrease in total VSC production in the knockout strain. Our work shows that l-methionine degradation via γ-elimination is a key step in the formation of VSCs in B. linens.
机译:L-蛋氨酸的酶促降解和随后形成的挥发性硫化合物(VSC)被认为对于奶酪中的风味形成至关重要。 l-蛋氨酸-γ-裂合酶(MGL)可以将l-蛋氨酸转化为甲硫醇(MTL),α-酮丁酸酯和氨。从已知产大量MTL和相关VSC的短杆菌属ATCC 9175型菌株中克隆了编码MGL的mgl基因。在菌株ATCC 9175中实现的mgl基因的破坏导致敲除菌株中硫醇生成活性下降62%,总VSC生成下降97%。我们的工作表明,通过γ消除L-蛋氨酸的降解是亚麻亚麻中VSC形成的关键步骤。

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