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首页> 外文期刊>FEMS Microbiology Reviews >Folds and activities of peptidoglycan amidases
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Folds and activities of peptidoglycan amidases

机译:肽聚糖酰胺酶的折叠和活性

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Bacterial peptidoglycan amidases are a large and diverse group of enzymes. During the last few years, genomic sequence information has accumulated to an extent such that lists of proven or predicted peptidoglycan amidases can now be expected to be fairly complete. Moreover, representative crystal structures for most groups of phylogenetically related peptidoglycan amidases have been solved. Here, sequence and structural information is combined with published biochemical findings to demonstrate that (a) peptidoglycan amidases have evolved for almost every bond that occurs in peptidoglycan, (b) there are enzymes that share the fold, yet cleave different bonds and (c) there are enzymes that have entirely different folds and must have evolved independently, and yet cleave the same peptide bond. It is shown that despite these complications, some rules can be deduced from the available biochemical and structural information that can be useful to predict the specificity of hypothetical peptidoglycan hydrolases, for which only sequence information is available.
机译:细菌肽聚糖酰胺酶是一大类多样的酶。在最近几年中,基因组序列信息积累到一定程度,以至现在可以证明已证实或预测的肽聚糖酰胺酶的清单相当完整。而且,已经解决了大多数系统发育相关肽聚糖酰胺酶的代表性晶体结构。在这里,序列和结构信息与已发表的生化发现相结合,证明(a)肽聚糖酰胺酶几乎已经在肽聚糖中发生的每个键上进化了;(b)有些酶具有相同的折叠倍数,但切割不同的键;(c)有一些酶具有完全不同的折叠,并且必须独立地进化,但是会裂解相同的肽键。结果表明,尽管存在这些并发症,但仍可从可用的生化和结构信息中推导出一些规则,这些规则可用于预测假设的肽聚糖水解酶的特异性,因为只有序列信息可用。

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