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Oligomerization and Aggregation of Bovine Pancreatic Ribonuclease A: Backbone Hydration Probed by Infrared Band-Shift

机译:牛胰腺核糖核酸酶A的低聚和聚集:红外带移探测骨干水化。

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摘要

Protein hydration plays a crucial role in almost all aspects of biomolecular processes In this research, we studied the hydration/dehydration-induced infrared amide I band-shift by using poly-L-lysine and bovine pancreas ribonuclease A as model polypeptides It was found that a 1-4 cm"1 shift could be clearly distinguished for all regular secondary structures during protein thermal unfolding. This shift was proven to be due to backbone hydration but not from experimental error, temperature effect or possible incomplete hydrogen/deuterium exchange of the samples Moreover, we also found that protein aggregation was closely associated with the backbone hydration/dehydration status of proteins In conditions favoring aggregation, a significant shift to a higher wavenumber of the band from the intermolecular /3-sheet structures in aggregates was observed. The present study suggested that the changes of the amounts of regular secondary structures could be monitored by the intensity changes, while the changes of the hydration status could be monitored by the shift of the infrared bands.
机译:蛋白质水合作用在生物分子过程的几乎所有方面都起着至关重要的作用。在这项研究中,我们以聚-L-赖氨酸和牛胰腺核糖核酸酶A作为模型多肽,研究了水合作用/脱水诱导的红外酰胺I带移。对于蛋白质热解折叠过程中的所有常规二级结构,可以清楚地区分1-4 cm“ 1的位移。这种位移被证明是由于骨架水合造成的,而不是由于实验误差,温度影响或样品中氢/氘交换不完全所致此外,我们还发现蛋白质聚集与蛋白质的主链水合/脱水状态密切相关。在有利于聚集的条件下,观察到聚集体中分子间/ 3-片层结构向较高波带的波数明显转移。研究表明,可以通过强度变化来监测规则二级结构的数量变化,可以通过红外波段的移动来监测水合状态的变化。

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