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多柔比星作为一种药物再利用,用于破坏α-糜蛋白酶原-A 聚集体。

Doxorubicin as a Drug Repurposing for Disruption of α-Chymotrypsinogen-A Aggregates.

机构信息

Department of Biochemistry, Faculty of Life Sciences, Aligarh Muslim University, Aligarh, U.P, 202002, India.

出版信息

Protein J. 2024 Aug;43(4):842-857. doi: 10.1007/s10930-024-10217-w. Epub 2024 Jul 16.

Abstract

Protein conformation is affected by interaction of several small molecules resulting either stabilization or disruption depending on the nature of the molecules. In our earlier communication, Hg was known to disrupt the native structure of α-Cgn A leading to aggregation (Ansari, N.K., Rais, A. & Naeem, A. Methotrexate for Drug Repurposing as an Anti-Aggregatory Agent to Mercuric Treated α-Chymotrypsinogen-A. Protein J (2024). https://doi.org/10.1007/s10930-024-10187-z ). Accumulation of β-rich aggregates in the living system is found to be linked with copious number of disorders. Here, we have investigated the effect of varying concentration of doxorubicin (DOX) i.e. 0-100 µM on the preformed aggregates of α-Cgn A upon incubation with 120 µM Hg. The decrease in the intrinsic fluorescence and enzyme activity with respect to increase in the Hg concentration substantiate the formation of aggregates. The DOX showed the dose dependent decrease in the ThT fluorescence, turbidity and RLS measurements endorsing the dissolution of aggregates which were consistent with red shift in ANS, confirming the breakdown of aggregates. The α-Cgn A has 30% α-helical content which decreases to 3% in presence of Hg. DOX increased the α-helicity to 28% confirming its anti-aggregatory potential. The SEM validates the formation of aggregates with Hg and their dissolution upon incubation with the DOX. Hemolysis assay checked the cytotoxicity of α-Cgn A aggregates. Docking revealed that the DOX interacted Lys203, Cys201, Cys136, Ser159, Leu10, Trp207, Val137 and Thr134 of α-Cgn A through hydrophobic interactions and Gly133, Thr135 and Lys202 forms hydrogen bonds.

摘要

蛋白质构象受几种小分子相互作用的影响,其结果取决于分子的性质,可能会导致稳定或破坏。在我们之前的交流中,已知 Hg 会破坏α-Cgn A 的天然结构,导致聚集(Ansari, N.K., Rais, A. & Naeem, A. Methotrexate for Drug Repurposing as an Anti-Aggregatory Agent to Mercuric Treated α-Chymotrypsinogen-A. Protein J (2024). https://doi.org/10.1007/s10930-024-10187-z )。在活系统中,β-丰富的聚集物的积累被发现与大量的疾病有关。在这里,我们研究了在孵育 120 µM Hg 时,不同浓度的多柔比星(DOX)(即 0-100 µM)对预先形成的α-Cgn A 聚集物的影响。随着 Hg 浓度的增加,内源荧光和酶活性的降低证实了聚集物的形成。DOX 显示出与 ThT 荧光、浊度和 RLS 测量值相关的剂量依赖性降低,这支持了聚集物的溶解,这与 ANS 的红移一致,证实了聚集物的破裂。α-Cgn A 有 30%的α-螺旋含量,在存在 Hg 的情况下减少到 3%。DOX 将α-螺旋度增加到 28%,证实了其抗聚集潜力。SEM 验证了在存在 Hg 的情况下形成聚集物及其在孵育 DOX 时的溶解。溶血试验检查了α-Cgn A 聚集物的细胞毒性。对接表明 DOX 通过疏水相互作用与α-Cgn A 的 Lys203、Cys201、Cys136、Ser159、Leu10、Trp207、Val137 和 Thr134 相互作用,并通过 Gly133、Thr135 和 Lys202 形成氢键。

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