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首页> 外文期刊>Science in China, Series C. Life science >Structural changes of cellobiohydrolase I (1,4-β-D- glucan-cellobiohydrolase I, CBHI) and PNPC (p-nitro-phenyl-β-D-cellobioside) during the binding process
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Structural changes of cellobiohydrolase I (1,4-β-D- glucan-cellobiohydrolase I, CBHI) and PNPC (p-nitro-phenyl-β-D-cellobioside) during the binding process

机译:结合过程中纤维二糖水解酶I(1,4-β-D-葡聚糖纤维二糖水解酶I,CBHI)和PNPC(对硝基苯基-β-D-纤维二糖苷)的结构变化

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摘要

Conformational changes to 1,4-β-D-glucan cellobiohydrolase I (CBHI) in response to its binding with p-nitrophenyl β-D-cellobioside (PNPC) were analyzed by second-derivative fluorescence spectrometry at the saturation binding point. Irreversible changes to the configuration of PNPC during the course of the binding process were characterized by UV spectral analysis. Isothermal titration calorimetry (ITC) was used to determine the stoichiometry of binding (i.e. the number of molar binding sites) of PNPC to CBHI. Two points on the surface of the CBHI molecule interact with PNPC, and irreversible changes to the configuration of PNPC occur during its conversion to p-nitrophenyl (PNP). The ITC studies demonstrated that the binding of PNPC to CBHI is an irreversible process, in which heat is released, but where there is no reversible equilibrium between PNPC-CBHI and CBHI and PNPC. On the other hand, PNP and cellobiose need to be released from the PNPC-CBHI complex to facilitate the repeated binding of new PNPC molecules to the renewable CBHI molecules. Therefore, we speculate that the energy, which powers the configurational change of PNPC as it is converted to PNP, is generated from cyclic changes in the conformation of CBHI during the binding/de-sorption process. These new insights may provide a basis for a better understanding of the binding mechanism in enzyme-substrate interactions.
机译:通过二阶导数荧光光谱法在饱和结合点分析了1,4-β-D-葡聚糖纤维二糖水解酶I(CBHI)与对硝基苯基β-D-纤维二糖苷(PNPC)结合的构象变化。结合过程中PNPC构型的不可逆变化通过紫外光谱分析来表征。等温滴定热法(ITC)用于确定PNPC与CBHI的结合化学计量(即摩尔结合位点数)。 CBHI分子表面上的两个点与PNPC相互作用,并且在PNPC转化为对硝基苯基(PNP)的过程中会发生不可逆的PNPC构型变化。 ITC研究表明,PNPC与CBHI的结合是不可逆过程,会释放热量,但PNPC-CBHI与CBHI和PNPC之间没有可逆平衡。另一方面,需要从PNPC-CBHI复合物中释放PNP和纤维二糖,以促进新PNPC分子与可再生CBHI分子的重复结合。因此,我们推测,在结合/解吸过程中,CBHI构象的周期性变化会产生能量,该能量为PNPC转换为PNP时的构型变化提供动力。这些新见解可为更好地理解酶-底物相互作用中的结合机制提供基础。

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