首页> 外文期刊>Archives of microbiology >Enzymes of dimethylsulfone metabolism and the phylogenetic characterization of the facultative methylotrophs Arthrobacter sulfonivorans sp nov., Arthrobacter methylotrophus sp nov., and Hyphomicrobium sulfonivorans sp.
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Enzymes of dimethylsulfone metabolism and the phylogenetic characterization of the facultative methylotrophs Arthrobacter sulfonivorans sp nov., Arthrobacter methylotrophus sp nov., and Hyphomicrobium sulfonivorans sp.

机译:二甲基砜的代谢酶和兼性甲基营养菌亚硫酸盐节菌,甲基营养盐菌和次生硫酸盐菌的系统发育特征。

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Novel methylotrophic Arthrobacter and Hyphomicrobium species are described. Constitutive membrane-associated dimethylsulfone- and dimethylsulfoxide-reductases were found in Arthrobacter methylotrophus strain TGA and Hyphomicrobium sulfonivorans strain S1. Enzyme activities increased during growth with dimethyl-sulfone or dimethylsulfoxide, respectively, and different ratios of activity with different growth substrates indicated that they are separate enzymes. SDS-PAGE showed some membrane-associated polypeptides to be enhanced during growth with dimethylsulfone (54 kDa in H. sulfonivorans, 21-24 kDa, 54 kDa and 80 kDa in A. methylotrophus). Western blotting with anti-dimethylsulfoxide-reductase antibody showed cross-reaction with 54- and 21-kDa polypeptides in A. methylotrophus. All strains contained rhodanese and sulfur oxygenase after growth with dimethylsulfone. Sulfite was oxidized in the Arthrobacter species by APS reductase and sulfite dehydrogenase. H. sulfonivorans oxidized sulfite with APS reductase, which is unusual for an alpha-proteobacterium. The Arthrobacter species were distinguished from each other and from other Arthrobacter and Micrococcus species by 16S rRNA gene sequence analysis. The menaquinone and fatty acid profiles of the Arthrobacter species were similar. Their peptidoglycan structures were L-Lys-z-Ser-L-Thr-L-Ala for A. sulfonivorans and L-Lys-L-Ala(2-4) for A. methylotrophus. H. sulfonivorans exhibited gross morphology typical for Hyphomicrobium, but possessed helically twisted prosthecae. 16S rRNA gene sequence analysis showed it to be distinct from all the other Hyphomicrobium, Filomicrobium and Pedomicrobium species sequenced to date. Formal descriptions of the new species are given. [References: 41]
机译:描述了新型的甲基营养型节杆菌和Hyphomicrobium物种。本构膜相关的二甲基砜和二甲基亚砜还原酶被发现在嗜甲基节杆菌的菌株TGA和次硫酸盐硫代硫酸盐菌株S1中。分别在二甲基砜或二甲基亚砜的生长过程中增加了酶的活性,在不同的生长底物下,不同比例的活性表明它们是独立的酶。 SDS-PAGE显示一些与膜相关的多肽在二甲基砜的生长过程中得到增强(H. sulfonivorans中为54 kDa,A.methylotrophus中为21-24 kDa,54 kDa和80 kDa)。用抗二甲基亚砜还原酶抗体进行的蛋白质印迹显示,与嗜甲基拟南芥中的54-和21-kDa多肽发生交叉反应。与二甲基砜一起生长后,所有菌株均含有罗丹明和硫氧化酶。亚硫酸盐在节杆菌属中被APS还原酶和亚硫酸盐脱氢酶氧化。 H. sulfonivorans用APS还原酶氧化亚硫酸盐,这对于α-变形杆菌来说是不常见的。通过16S rRNA基因序列分析,将节杆菌属种类彼此区分,并将其与其他节杆菌属和微球菌种类区分开。关节杆菌物种的甲基萘醌和脂肪酸谱相似。他们的肽聚糖结构是A. sulfonivorans的L-Lys-z-Ser-L-Thr-L-Ala和A.methylotrophus的L-Lys-L-Ala(2-4)。 H. sulfonivorans表现出典型的Hyphomicrobium的总体形态,但具有螺旋扭曲的假体。 16S rRNA基因序列分析表明,它与迄今测序的所有其他Hyphomicrobium,Filomicrobium和Pedomicrobium物种均不同。给出了新物种的正式描述。 [参考:41]

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