首页> 外文期刊>Journal of bacteriology >ScaC, an Adaptor Protein Carrying a Novel Cohesin That Expands the Dockerin-Binding Repertoire of the Ruminococcus flavefaciens 17 Cellulosome
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ScaC, an Adaptor Protein Carrying a Novel Cohesin That Expands the Dockerin-Binding Repertoire of the Ruminococcus flavefaciens 17 Cellulosome

机译:ScaC,一种携带新型黏着蛋白的衔接蛋白,可扩展黄褐球菌的褐变蛋白17细胞质的Dockerin结合库

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A new gene, designated scaC and encoding a protein carrying a single cohesin, was identified in the cellulolytic rumen anaerobe Ruminococcus flavefaciens 17 as part of a gene cluster that also codes for the cellulosome structural components ScaA and ScaB. Phylogenetic analysis showed that the sequence of the ScaC cohesin is distinct from the sequences of other cohesins, including the sequences of R. flavefaciens ScaA and ScaB. The scaC gene product also includes at its C terminus a dockerin module that closely resembles those found in R. flavefaciens enzymes that bind to the cohesins of the primary ScaA scaffoldin. The putative cohesin domain and the C-terminal dockerin module were cloned and overexpressed in Escherichia coli as His6-tagged products (ScaC-Coh and ScaC-Doc, respectively). Affinity probing of protein extracts of R. flavefaciens 17 separated in one-dimensional and two-dimensional gels with recombinant cohesins from ScaC and ScaA revealed that two distinct subsets of native proteins interact with ScaC-Coh and ScaA-Coh. Furthermore, ScaC-Coh failed to interact with the recombinant dockerin module from the enzyme EndB that is recognized by ScaA cohesins. On the other hand, ScaC-Doc was shown to interact specifically with the recombinant cohesin domain from ScaA, and the ScaA-Coh probe was shown to interact with a native 29-kDa protein spot identified as ScaC by matrix-assisted laser desorption ionization—time of flight mass spectrometry. These results suggest that ScaC plays the role of an adaptor scaffoldin that is bound to ScaA via the ScaC dockerin module, which, via the distinctive ScaC cohesin, expands the range of proteins that can bind to the ScaA-based enzyme complex.
机译:在纤维素分解瘤胃厌氧菌 Ruminococcus flavefaciens 17中鉴定出了一个新基因,命名为 scaC ,该蛋白携带一种黏附蛋白。该基因也是该基因簇的一部分。纤维素结构成分ScaA和ScaB。系统发育分析表明,ScaC黏附素的序列与其他黏附素的序列不同,包括 R的序列。 ScaA和ScaB。 scaC 基因产物在其C末端还包括一个dockerin模块,该模块与 R中发现的模块非常相似。与初级ScaA支架的黏附素结合的flavefaciens 酶。克隆了假定的黏附素结构域和C末端dockerin模块,并以带有His 6 标签的产物(分别为ScaC-Coh和ScaC-Doc)在大肠杆菌中过表达。亲和力探查 R蛋白提取物。用来自ScaC和ScaA的重组粘着蛋白在一维和二维凝胶中分离的flavefaciens 17表明,天然蛋白的两个不同子集与ScaC-Coh和ScaA-Coh相互作用。此外,ScaC-Coh无法与ScaA粘着蛋白识别的酶EndB中的重组dockerin模块相互作用。另一方面,显示ScaC-Doc与ScaA的重组黏着蛋白结构域特异性相互作用,并且显示ScaA-Coh探针与通过基质辅助激光解吸电离法鉴定为ScaC的天然29 kDa蛋白斑点相互作用-飞行时间质谱。这些结果表明,ScaC发挥了通过ScaC dockerin模块与ScaA结合的衔接子骨架的作用,该支架通过独特的ScaC黏着蛋白,扩展了可以与基于ScaA的酶复合物结合的蛋白质范围。

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