首页> 外文期刊>Biochimica et Biophysica Acta. Protein Structure and Molecular Enzymology >Cold-induced enzyme inactivation: how does cooling lead to pyridoxal phosphate-aldimine bond cleavage in tryptophanase?
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Cold-induced enzyme inactivation: how does cooling lead to pyridoxal phosphate-aldimine bond cleavage in tryptophanase?

机译:冷诱导的酶失活:冷却如何导致色氨酸酶中的吡ido醛磷酸-醛亚胺键断裂?

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摘要

The phenomenon of cold scission or cold lability, which entails a widespread variety of oligomeric enzymes, is still enigmatic. The effect of cooling on the activity and the quaternary structure of the pyridoxal 5'-phosphate (PLP)-dependent enzyme, tryptophanase (Tnase), was studied utilizing single photon counting time-resolved spectrofluorometry. Upon cooling of holo-wild-type (wt) Tnase and its W330F mutant from 25 ℃ to 2 ℃, a reduction in PLP fluorescence lifetime and rotational correlation time as well as inactivation and dissociation from tetramers to dimers were observed for both enzymes. Fluorescence anisotropy invariably decreased as a consequence of cooling, whether it was accompanied by a slight decrease in activity without significant dissociation, or by a substantial decrease in activity that was associated with either a partial or major dissociation. These results support the suggested conformational change that precedes the PLP-aldimine bond scission. It is proposed that cold inactivation is initiated by the weakening of hydrophobic interactions, leading to conformational changes which are the driving force for the aldimine bond cleavage.
机译:导致广泛分裂的寡聚酶的冷断裂或冷不稳定性现象仍然是令人费解的。利用单光子计数时间分辨荧光光谱法研究了冷却对吡ido醛5'-磷酸(PLP)依赖性酶色氨酸酶(Tnase)的活性和四级结构的影响。将全野生型(wt)Tnase及其W330F突变体从25℃冷却到2℃后,两种酶均观察到PLP荧光寿命和旋转相关时间的减少以及四聚体向二聚体的失活和解离。冷却导致荧光各向异性不断降低,无论是伴随着活性的轻微下降而没有明显的解离,还是伴随着部分或主要解离的活性的显着下降。这些结果支持在PLP-醛亚胺键断裂之前建议的构象变化。提出冷灭活是由疏水相互作用的减弱引起的,导致构象变化,这是醛亚胺键断裂的驱动力。

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