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受蓖麻毒素启发针对ErbB2扩增肿瘤的融合蛋白的计算设计

Computational design of fusion proteins against ErbB2-amplified tumors inspired by ricin toxin.

作者信息

Ahmadi Moghaddam Yasser, Maroufi Asad, Zareei Sara, Irani Mehdi

机构信息

Department of Plant Production and Genetics, Faculty of Agriculture, University of Kurdistan, Sanandaj, Iran.

Department of Cell & Molecular Biology, Faculty of Biological Sciences, Kharazmi University, Tehran, Iran.

出版信息

Front Mol Biosci. 2023 Mar 2;10:1098365. doi: 10.3389/fmolb.2023.1098365. eCollection 2023.

Abstract

Although the anti-cancer activity of ricin is well-known, its non-specific targeting challenges the development of ricin-derived medicines. In the present study, novel potential ribosome-inactivating fusion proteins (RIPs) were computationally engineered by incorporation of an ErbB2-dependant penetrating peptide (KCCYSL, MARAKE, WYSWLL, MARSGL, MSRTMS, and WYAWML), a linker (either EAAAK or GGGGS) and chain A of ricin which is responsible for the ribosome inactivation. Molecular dynamics simulations assisted in making sure that the least change is made in conformation and dynamic behavior of ricin chain A in selected chimeric protein (CP). Moreover, the potential affinity of the selected CPs against the ligand-uptaking ErbB2 domain was explored by molecular docking. The results showed that two CPs (CP2 and 10) could bind the receptor with the greatest affinity.

摘要

尽管蓖麻毒素的抗癌活性广为人知,但其非特异性靶向作用给蓖麻毒素衍生药物的研发带来了挑战。在本研究中,通过掺入一种依赖表皮生长因子受体2(ErbB2)的穿膜肽(KCCYSL、MARAKE、WYSWLL、MARSGL、MSRTMS和WYAWML)、一个连接子(EAAAK或GGGGS)以及负责核糖体失活的蓖麻毒素A链,通过计算机辅助设计构建了新型潜在核糖体失活融合蛋白(RIPs)。分子动力学模拟有助于确保所选嵌合蛋白(CP)中蓖麻毒素A链的构象和动力学行为变化最小。此外,通过分子对接研究了所选CPs与摄取配体的ErbB2结构域的潜在亲和力。结果表明,两种CP(CP2和10)能以最大亲和力结合该受体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/12b2/10018397/0a898bf794a3/fmolb-10-1098365-g001.jpg

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