Xu Qi, Morrison Mark, Nelson Karen E, Bayer Edward A, Atamna Nof, Lamed Raphael
Department of Molecular Microbiology and Biotechnology, Tel-Aviv University, Ramat Aviv, Israel.
FEBS Lett. 2004 May 21;566(1-3):11-6. doi: 10.1016/j.febslet.2004.04.005.
We recently showed that some of the enzymes underpinning cellulose solubilization by Ruminococcus albus 8 lack the conventional type of dockerin module characteristic of cellulosomal proteins and instead, bear an "X" domain of unknown function at their C-termini. We have now subcloned and expressed six X domains and showed that five of them bind to xylan, chitin, microcrystalline and phosphoric-acid swollen cellulose, as well as more heterogenous substrates such as alfalfa cell walls, banana stem and wheat straw. The X domain that did not bind to these substrates was derived from a family-5 glycoside hydrolase (Cel5G), which possesses two X domains in tandem. Whereas the internal X domain failed to bind to the substrates, the recombinant dyad exhibited markedly enhanced binding relative to that observed for the C-terminal X domain alone. The evidence supports a distinctive carbohydrate-binding role of broad specificity for this type of domain, and we propose a novel family (designated family 37) of carbohydrate-binding modules that appear to be peculiar to R. albus.
我们最近发现,一些支持白色瘤胃球菌8溶解纤维素的酶缺乏典型的纤维小体蛋白所具有的传统类型的锚定蛋白结构域,相反,它们在C端带有一个功能未知的“X”结构域。我们现已对6个X结构域进行亚克隆和表达,并发现其中5个能与木聚糖、几丁质、微晶纤维素和磷酸膨胀纤维素结合,还能与更复杂的底物如苜蓿细胞壁、香蕉茎和麦秸结合。不与这些底物结合的X结构域来自一个5家族糖苷水解酶(Cel5G),该酶串联有两个X结构域。虽然内部的X结构域不能与底物结合,但重组二聚体相对于单独的C端X结构域表现出显著增强的结合能力。这些证据支持了这类结构域具有独特的、广泛特异性的碳水化合物结合作用,我们提出了一个新的碳水化合物结合模块家族(命名为37家族),该家族似乎是白色瘤胃球菌所特有的。