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Probing Substrate Interactions in the Active Tunnel of a Catalytically Deficient Cellobiohydrolase (Cel7)

机译:探测底物相互作用的催化缺陷的纤维二糖水解酶(Cel7)的主动隧道中。

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摘要

Cellobiohydrolases break down cellulose sequentially by sliding along the crystal surface with a single cellulose strand threaded through the catalytic tunnel of the enzyme. This so-called processive mechanism relies on a complex pattern of enzyme-substrate interactions, which need to be addressed in molecular descriptions of processivity and its driving forces. Here, we have used titration calorimetry to study interactions of cellooligosaccharides (COS) and a catalytically deficient variant (E212Q) of the enzyme Cel7A from Trichoderma reesei. This enzyme has ∼10 glucopyranose subsites in the catalytic tunnel, and using COS ligands with a degree of polymerization (DP) from 2 to 8, different regions of the tunnel could be probed. For COS ligands with a DP of 2–3 the binding constants were around 105 m−1, and for longer ligands (DP 5–8) this value was ∼107 m−1. Within each of these groups we did not find increased affinity as the ligands got longer and potentially filled more subsites. On the contrary, we found a small but consistent affinity loss as DP rose from 6 to 8, particularly at the higher investigated temperatures. Other thermodynamic functions (ΔH, ΔS, and ΔCp) decreased monotonously with both temperature and DP. Combined interpretation of these thermodynamic results and previously published structural data allowed assessment of an affinity profile along the length axis of the active tunnel.
机译:纤维二糖水解酶通过沿晶体表面滑动而使纤维素顺序分解,其中单条纤维素链穿过酶的催化通道。这种所谓的过程机制依赖于酶-底物相互作用的复杂模式,这需要在分子描述生产力和其驱动力时加以解决。在这里,我们已使用滴定热法研究纤维素寡糖(COS)与里氏木霉(Trichoderma reesei)酶Cel7A的催化缺陷型变体(E212Q)的相互作用。该酶在催化通道中有约10个吡喃葡萄糖位点,使用聚合度(DP)为2至8的COS配体可以探测通道的不同区域。对于DP为2-3的COS配体,结合常数约为10 5 m -1 ,而对于较长的配体(DP 5-8),该值为〜10 7 m -1 。在这些组中的每一个中,我们都没有发现亲和力增加,因为配体更长并且可能填充了更多的亚位点。相反,我们发现DP值从6上升到8时,亲和力损失很小但持续不变,尤其是在较高的研究温度下。其他热力学函数(ΔH,ΔS和ΔCp)随温度和DP均单调降低。这些热力学结果的解释和以前发布的结构数据的结合,可以评估沿活动隧道长度轴的亲和力分布。

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