首页> 外文OA文献 >Homologs of the Rml Enzymes from Salmonella enterica Are Responsible for dTDP-β-l-Rhamnose Biosynthesis in the Gram-Positive Thermophile Aneurinibacillus thermoaerophilus DSM 10155
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Homologs of the Rml Enzymes from Salmonella enterica Are Responsible for dTDP-β-l-Rhamnose Biosynthesis in the Gram-Positive Thermophile Aneurinibacillus thermoaerophilus DSM 10155

机译:肠炎沙门氏菌Rml酶的同系物负责革兰氏阳性嗜热嗜热嗜热气单胞菌DSM 10155中的dTDP-β-1-鼠李糖生物合成。

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摘要

The glycan chains of the surface layer (S-layer) glycoprotein from the gram-positive, thermophilic bacterium Aneurinibacillus (formerly Bacillus) thermoaerophilus strain DSM 10155 are composed of l-rhamnose- and d-glycero-d-manno-heptose-containing disaccharide repeating units which are linked to the S-layer polypeptide via core structures that have variable lengths and novel O-glycosidic linkages. In this work we investigated the enzymes involved in the biosynthesis of thymidine diphospho-l-rhamnose (dTDP-l-rhamnose) and their specific properties. Comparable to lipopolysaccharide O-antigen biosynthesis in gram-negative bacteria, dTDP-l-rhamnose is synthesized in a four-step reaction sequence from dTTP and glucose 1-phosphate by the enzymes glucose-1-phosphate thymidylyltransferase (RmlA), dTDP-d-glucose 4,6-dehydratase (RmlB), dTDP-4-dehydrorhamnose 3,5-epimerase (RmlC), and dTDP-4-dehydrorhamnose reductase (RmlD). The rhamnose biosynthesis operon from A. thermoaerophilus DSM 10155 was sequenced, and the genes were overexpressed in Escherichia coli. Compared to purified enterobacterial Rml enzymes, the enzymes from the gram-positive strain show remarkably increased thermostability, a property which is particularly interesting for high-throughput screening and enzymatic synthesis. The closely related strain A. thermoaerophilus L420-91T produces d-rhamnose- and 3-acetamido-3,6-dideoxy-d-galactose-containing S-layer glycan chains. Comparison of the enzyme activity patterns in A. thermoaerophilus strains DSM 10155 and L420-91T for l-rhamnose and d-rhamnose biosynthesis indicated that the enzymes are differentially expressed during S-layer glycan biosynthesis and that A. thermoaerophilus L420-91T is not able to synthesize dTDP-l-rhamnose. These findings confirm that in each strain the enzymes act specifically on S-layer glycoprotein glycan formation.
机译:来自革兰氏阳性嗜热细菌嗜热嗜热气单胞菌菌株DSM 10155的表面层(S层)糖蛋白的聚糖链由含1-鼠李糖和d-甘油-d-甘露聚糖-庚糖的二糖组成通过具有可变长度和新颖的O-糖苷键的核心结构与S-层多肽连接的重复单元。在这项工作中,我们研究了与胸苷二磷酸-1-鼠李糖(dTDP-1-鼠李糖)的生物合成有关的酶及其特异性。与革兰氏阴性细菌中脂多糖O抗原的生物合成相比,dTDP-1-鼠李糖是由dTTP和1-磷酸葡萄糖通过葡萄糖-1-磷酸胸苷基转移酶(RmlA),dTDP-d酶以四步反应序列合成的-葡萄糖4,6-脱水酶(RmlB),dTDP-4-脱水海藻糖3,5-表异构酶(RmlC)和dTDP-4-脱水海藻糖还原酶(RmlD)。对嗜热嗜热气单胞菌DSM 10155的鼠李糖生物合成操纵子进行了测序,该基因在大肠杆菌中过表达。与纯化的肠细菌Rm1酶相比,革兰氏阳性菌株的酶显示出显着提高的热稳定性,这一特性对于高通量筛选和酶促合成特别有趣。密切相关的嗜热嗜热气单胞菌L420-91T菌株产生含d-鼠李糖和3-乙酰氨基-3,6-二脱氧-d-半乳糖的S层聚糖链。嗜热气单胞菌菌株DSM 10155和L420-91T的L-鼠李糖和d-鼠李糖生物合成酶活性模式的比较表明,酶在S层聚糖生物合成过程中差异表达,而嗜热气单胞菌L420-91T无法合成dTDP-1-鼠李糖。这些发现证实,在每种菌株中,所述酶特异性地作用于S层糖蛋白聚糖的形成。

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