首页> 外文期刊>Journal of molecular recognition: JMR >The binding interaction between cadmium‐based, aqueous‐phase quantum dots with Candida rugosa Candida rugosa Candida rugosa lipase
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The binding interaction between cadmium‐based, aqueous‐phase quantum dots with Candida rugosa Candida rugosa Candida rugosa lipase

机译:镉基水相量圆点的结合相互作用与念珠菌兰科萨念珠菌兰科萨念珠菌Rugosa脂肪酶

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摘要

Abstract As a promising biolabeling biomaterials, quantum dots (QDs) present a great potential. However, the toxicity of QDs to organisms has attracted wide attention. In our research, we introduced an in vitro method to study the molecular mechanisms for the structure and activity alterations of Candida rugosa lipase (CRL) with the binding of 3‐mercaptopropionic acid‐capped CdTe QDs. Multiple spectroscopic methods, isothermal titration calorimetry, and enzyme activity measurements were used in this paper. QDs statically quenched the intrinsic fluorescence of CRL with the quenching constant decreases from 2.46?×?10 13 to 1.64?×?10 13 ?L?mol ?1 ?second ?1 (298 to 310?K). It binds to CRL through hydrophobic force with 1 binding site, unfolding and loosening the skeleton and changed its secondary structure. Rather than aggregating on the surface, it enters the pocket of the CRL to interact with Ser‐209 (2.43??) and the residues surrounding Ser‐209, making the catalytic triad more exposed. Furthermore, the activity of CRL was inhibited by approximately 15%. This work demonstrates that 3‐mercaptopropionic acid‐capped CdTe QDs may cause negative effects to CRL and obtains a molecular mechanism on QD‐induced toxicity to proteins in vitro.
机译:摘要作为有前途的生物标记生物材料,量子点(QDS)具有巨大的潜力。然而,QDS对生物的毒性引起了广泛的关注。在我们的研究中,我们介绍了一种体外方法,研究了Candida Rugosa脂肪酶(CRL)的结构和活性改变的分子机制,其结合3-巯基丙酸封端的CdTeqds。本文使用了多种光谱方法,等温滴定热量和酶活性测量。 QDS静态淬灭CRL的固有荧光,淬火常数从2.46Ω·×10 13到1.64?×10 13?L?1?第二?1(298至310?K)。它通过疏水力与CRL与1个结合位点结合,展开和松开骨架并改变其二级结构。它不是在表面上聚集,进入CRL的口袋,以与SER-209(2.43?)和SER-209周围的残留物相互作用,使催化三合会更暴露。此外,CRL的活性抑制约15%。该工作表明,3-巯基丙酸封端的CdTe QD可能对CRL引起负面影响,并在体外对QD诱导的QD诱导的毒性进行分子机制。

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