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猫传染性腹膜炎病毒3C样蛋白酶的X射线结构及抑制作用:对药物设计的结构启示

X-ray structure and inhibition of the feline infectious peritonitis virus 3C-like protease: Structural implications for drug design.

作者信息

St John Sarah E, Therkelsen Matthew D, Nyalapatla Prasanth R, Osswald Heather L, Ghosh Arun K, Mesecar Andrew D

机构信息

Departments of Biochemistry and Biological Sciences, Purdue University, West Lafayette, IN, USA; Centers for Cancer Research & Drug Discovery, Purdue University, West Lafayette, IN, USA.

Departments of Biochemistry and Biological Sciences, Purdue University, West Lafayette, IN, USA.

出版信息

Bioorg Med Chem Lett. 2015 Nov 15;25(22):5072-7. doi: 10.1016/j.bmcl.2015.10.023. Epub 2015 Oct 13.

Abstract

Feline infectious peritonitis (FIP) is a deadly disease that effects both domestic and wild cats and is caused by a mutation in feline coronavirus (FCoV) that allows the virus to replicate in macrophages. Currently, there are no treatments or vaccines available for the treatment of FIP even though it kills approximately 5% of cats in multi-cat households per year. In an effort to develop small molecule drugs targeting FIP for the treatment of cats, we screened a small set of designed peptidomimetic inhibitors for inhibition of FIPV-3CL(pro), identifying two compounds with low to sub-micromolar inhibition, compound 6 (IC50=0.59±0.06 μM) and compound 7 (IC50=1.3±0.1 μM). We determined the first X-ray crystal structure of FIPV-3CL(pro) in complex with the best inhibitor identified, compound 6, to a resolution of 2.10 Å to better understand the structural basis for inhibitor specificity. Our study provides important insights into the structural requirements for the inhibition of FIPV-3CL(pro) by peptidomimetic inhibitors and expands the current structural knowledge of coronaviral 3CL(pro) architecture.

摘要

猫传染性腹膜炎(FIP)是一种致命疾病,影响家猫和野猫,由猫冠状病毒(FCoV)的突变引起,这种突变使病毒能够在巨噬细胞中复制。目前,尽管FIP每年导致多猫家庭中约5%的猫死亡,但尚无治疗方法或疫苗。为了开发针对FIP治疗猫的小分子药物,我们筛选了一小部分设计的拟肽抑制剂,以抑制FIPV - 3CL(pro),鉴定出两种具有低至亚微摩尔抑制作用的化合物,化合物6(IC50 = 0.59±0.06 μM)和化合物7(IC50 = 1.3±0.1 μM)。我们确定了FIPV - 3CL(pro)与鉴定出的最佳抑制剂化合物6形成复合物的首个X射线晶体结构,分辨率为2.10 Å,以更好地理解抑制剂特异性的结构基础。我们的研究为拟肽抑制剂抑制FIPV - 3CL(pro)的结构要求提供了重要见解,并扩展了目前冠状病毒3CL(pro)结构的知识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6b83/7125580/aaf3ab8bae2c/fx1.jpg

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