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The glgB-encoded glycogen branching enzyme is essential for glycogen accumulation in Corynebacterium glutamicum

机译:GLGB编码的糖原分支酶对于棒状杆菌糖氨基杆菌中的糖原积累是必不可少的

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Corynebacterium glutamicum transiently accumulates glycogen as carbon capacitor during the early exponential growth phase in media containing carbohydrates. In some bacteria glycogen is synthesized by the consecutive action of ADP-glucose pyrophosphorylase (GlgC), glycogen synthase (GlgA) and glycogen branching enzyme (GlgB). GlgC and GlgA of C. glutamicum have been shown to be necessary for glycogen accumulation in this organism. However, although cg1381 has been annotated as the putative C. glutamicum glgB gene, cg1381 and its gene product have not been characterized and their role in transient glycogen accumulation has not yet been investigated. We show here that the cg1381 gene product of C. glutamicum catalyses the formation of α-1,6-glycosidic bonds in polysaccharides and thus represents a glycogen branching enzyme. RT-PCR experiments revealed glgB to be co-transcribed with glgE, probably encoding a maltosyltransferase. Promoter activity assays with the glgE promoter region revealed carbon-source-dependent expression of the glgEB operon. Characterization of the growth and glycogen content of glgB-deficient and glgB-overexpressing strains showed that the glycogen branching enzyme GlgB is essential for glycogen formation in C. glutamicum. Taken together these results suggest that an interplay of the enzymes GlgC, GlgA and GlgB is not essential for growth, but is required for synthesis of the transient carbon capacitor glycogen in C. glutamicum.
机译:在含有碳水化合物的培养基早期指数生长相期间,植物杆菌谷氨酸瞬时累积糖原作为碳电容器。在一些细菌中,通过ADP-葡萄糖焦磷酸化酶(GLGC),糖原合酶(GLGA)和糖原分支酶(GLGB)的连续作用合成。已经显示出C.谷氨酰胺的GLGC和GLGA在该生物体中的糖原积累是必要的。然而,尽管CG1381已经被注释为推定的C.谷氨酰胺醇GlGB基因,但尚未表征CG1381及其基因产物,并且尚未研究其在短暂的糖原积累中的作用。在此显示C.谷氨酰胺的CG1381基因产物催化多糖中α-1,6-糖苷键的形成,因此代表糖原分支酶。 RT-PCR实验揭示了GLGB与浊音共转录,可能是编码丙糖基转移酶。具有衰老启动子区域的启动子活性测定揭示了Glgeb操纵子的碳源依赖性表达。 GLGB缺陷和GLGB过表达菌株的生长和糖原含量的表征表明,糖原分支酶GLGB对于C.谷氨酰胺中的糖原形成是必不可少的。总而言之,这些结果表明,酶GLGC,GLGA和GLGB的相互作用对生长不是必需的,但是在C.谷氨酰胺中的瞬时碳电容器糖原的合成需要。

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