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A Taxonomy of Bacterial Microcompartment Loci Constructed by a Novel Scoring Method

机译:一种新的计分方法构建的细菌微区位的分类学

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Bacterial microcompartments (BMCs) are proteinaceous organelles involved in both autotrophic and heterotrophic metabolism. All BMCs share homologous shell proteins but differ in their complement of enzymes; these are typically encoded adjacent to shell protein genes in genetic loci, or operons. To enable the identification and prediction of functional (sub)types of BMCs, we developed LoClass, an algorithm that finds putative BMC loci and inventories, weights, and compares their constituent pfam domains to construct a locus similarity network and predict locus (sub)types. In addition to using LoClass to analyze sequences in the Non-redundant Protein Database, we compared predicted BMC loci found in seven candidate bacterial phyla (six from single-cell genomic studies) to the LoClass taxonomy. Together, these analyses resulted in the identification of 23 different types of BMCs encoded in 30 distinct locus (sub)types found in 23 bacterial phyla. These include the two carboxysome types and a divergent set of metabolosomes, BMCs that share a common catalytic core and process distinct substrates via specific signature enzymes. Furthermore, many Candidate BMCs were found that lack one or more core metabolosome components, including one that is predicted to represent an entirely new paradigm for BMC-associated metabolism, joining the carboxysome and metabolosome. By placing these results in a phylogenetic context, we provide a framework for understanding the horizontal transfer of these loci, a starting point for studies aimed at understanding the evolution of BMCs. This comprehensive taxonomy of BMC loci, based on their constituent protein domains, foregrounds the functional diversity of BMCs and provides a reference for interpreting the role of BMC gene clusters encoded in isolate, single cell, and metagenomic data. Many loci encode ancillary functions such as transporters or genes for cofactor assembly; this expanded vocabulary of BMC-related functions should be useful for design of genetic modules for introducing BMCs in bioengineering applications.
机译:细菌微区室(BMC)是参与自养和异养代谢的蛋白质细胞器。所有BMC都具有同源的外壳蛋白,但酶的补体不同。这些通常在遗传基因座或操纵子中与壳蛋白基因相邻地编码。为了能够识别和预测BMC的功能性(亚型),我们开发了LoClass,该算法可查找假定的BMC座位和清单,权重,并比较它们的pfam域以构建基因座相似性网络并预测基因座(亚型) 。除了使用LoClass分析非冗余蛋白数据库中的序列外,我们还将在七个候选细菌门(单细胞基因组研究中的六个)中发现的预测BMC基因座与LoClass分类进行了比较。这些分析共同导致鉴定出23种不同类型的BMC,这些BMC以23种细菌门中的30种不同基因座(亚型)编码。这些包括两种羧基体类型和一组不同的代谢球体,BMC,它们共享一个共同的催化核心并通过特定的签名酶处理不同的底物。此外,发现许多候选BMC缺少一种或多种核心代谢组学成分,其中包括一种被预测为代表BMC相关代谢的全新范式的生物,它连接了羧基体和代谢组。通过将这些结果放在系统发育的背景下,我们提供了一个框架,用于了解这些基因座的水平转移,这是旨在了解BMC进化的研究的起点。 BMC基因座的这种全面分类法基于其组成蛋白结构域,展现了BMC的功能多样性,并为解释在分离株,单细胞和宏基因组学数据中编码的BMC基因簇的作用提供了参考。许多基因座编码辅助功能,例如转运蛋白或辅助因子组装基因。 BMC相关功能的扩展词汇表对于将BMC引入生物工程应用的遗传模块的设计应该是有用的。

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