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11种革兰氏阳性菌的转运能力:比较基因组分析

Transport capabilities of eleven gram-positive bacteria: comparative genomic analyses.

作者信息

Lorca Graciela L, Barabote Ravi D, Zlotopolski Vladimir, Tran Can, Winnen Brit, Hvorup Rikki N, Stonestrom Aaron J, Nguyen Elizabeth, Huang Li-Wen, Kim David S, Saier Milton H

机构信息

Division of Biological Sciences, University of California at San Diego, La Jolla, CA 92093-0116, USA.

出版信息

Biochim Biophys Acta. 2007 Jun;1768(6):1342-66. doi: 10.1016/j.bbamem.2007.02.007. Epub 2007 Feb 17.

Abstract

The genomes of eleven Gram-positive bacteria that are important for human health and the food industry, nine low G+C lactic acid bacteria and two high G+C Gram-positive organisms, were analyzed for their complement of genes encoding transport proteins. Thirteen to 18% of their genes encode transport proteins, larger percentages than observed for most other bacteria. All of these bacteria possess channel proteins, some of which probably function to relieve osmotic stress. Amino acid uptake systems predominate over sugar and peptide cation symporters, and of the sugar uptake porters, those specific for oligosaccharides and glycosides often outnumber those for free sugars. About 10% of the total transport proteins are constituents of putative multidrug efflux pumps with Major Facilitator Superfamily (MFS)-type pumps (55%) being more prevalent than ATP-binding cassette (ABC)-type pumps (33%), which, however, usually greatly outnumber all other types. An exception to this generalization is Streptococcus thermophilus with 54% of its drug efflux pumps belonging to the ABC superfamily and 23% belonging each to the Multidrug/Oligosaccharide/Polysaccharide (MOP) superfamily and the MFS. These bacteria also display peptide efflux pumps that may function in intercellular signalling, and macromolecular efflux pumps, many of predictable specificities. Most of the bacteria analyzed have no pmf-coupled or transmembrane flow electron carriers. The one exception is Brevibacterium linens, which in addition to these carriers, also has transporters of several families not represented in the other ten bacteria examined. Comparisons with the genomes of organisms from other bacterial kingdoms revealed that lactic acid bacteria possess distinctive proportions of recognized transporter types (e.g., more porters specific for glycosides than reducing sugars). Some homologues of transporters identified had previously been identified only in Gram-negative bacteria or in eukaryotes. Our studies reveal unique characteristics of the lactic acid bacteria such as the universal presence of genes encoding mechanosensitive channels, competence systems and large numbers of sugar transporters of the phosphotransferase system. The analyses lead to important physiological predictions regarding the preferred signalling and metabolic activities of these industrially important bacteria.

摘要

对11种对人类健康和食品工业至关重要的革兰氏阳性菌(9种低G+C含量的乳酸菌和2种高G+C含量的革兰氏阳性菌)的基因组进行了分析,以研究其编码转运蛋白的基因组成。这些细菌中有13%至18%的基因编码转运蛋白,这一比例高于大多数其他细菌。所有这些细菌都拥有通道蛋白,其中一些可能起到缓解渗透压力的作用。氨基酸摄取系统比糖和肽阳离子同向转运体更为常见,而在糖摄取转运体中,对寡糖和糖苷具有特异性的转运体通常比游离糖的转运体数量更多。约10%的总转运蛋白是假定的多药外排泵的组成部分,其中主要易化子超家族(MFS)型泵(55%)比ATP结合盒(ABC)型泵(33%)更为普遍,不过ABC型泵的数量通常大大超过所有其他类型。嗜热链球菌是这一普遍规律的一个例外,其54%的药物外排泵属于ABC超家族,23%分别属于多药/寡糖/多糖(MOP)超家族和MFS。这些细菌还表现出可能在细胞间信号传导中起作用的肽外排泵以及许多具有可预测特异性的大分子外排泵。大多数分析的细菌没有质子动力势偶联或跨膜流动电子载体。唯一的例外是亚麻短杆菌,除了这些载体外,它还拥有其他10种被检测细菌中未出现的几个家族的转运体。与其他细菌类群的生物体基因组进行比较后发现,乳酸菌拥有独特比例的已识别转运体类型(例如,对糖苷具有特异性的转运体比还原糖的转运体更多)。一些已鉴定的转运体同源物此前仅在革兰氏阴性菌或真核生物中被鉴定出来。我们的研究揭示了乳酸菌的独特特征,例如普遍存在编码机械敏感通道、感受态系统和大量磷酸转移酶系统糖转运体的基因。这些分析得出了关于这些具有重要工业意义细菌的偏好信号传导和代谢活动的重要生理学预测。

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