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用于抗真菌激酶抑制剂表征的化学蛋白质组学分析

Chemoproteomic Profiling of for Characterization of Anti-fungal Kinase Inhibitors.

作者信息

Shirley David J, Nandakumar Meganathan, Cabrera Aurora, Yiu Bonnie, Puumala Emily, Liu Zhongle, Robbins Nicole, Whitesell Luke, Smith Jeffrey L, Lyons Scott P, Mordant Angie L, Herring Laura E, Graves Lee M, Couñago Rafael M, Drewry David H, Cowen Leah E, Willson Timothy M

机构信息

Structural Genomics Consortium and Division of Chemical Biology and Medicinal Chemistry, UNC Eshelman School of Pharmacy, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599, USA.

Department of Pharmacology, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599, USA.

出版信息

bioRxiv. 2025 Jan 10:2025.01.10.632200. doi: 10.1101/2025.01.10.632200.

Abstract

is a growing health concern as the leading causal agent of systemic candidiasis, a life-threatening fungal infection with a mortality rate of ~40% despite best available therapy. Yck2, a fungal casein kinase 1 (CK1) family member, is the cellular target of inhibitors YK-I-02 (YK) and MN-I-157 (MN). Here, multiplexed inhibitor beads paired with mass spectrometry (MIB/MS) employing ATP-competitive kinase inhibitors were used to define the selectivity of these Yck2 inhibitors across the global proteome. The MIB matrix captured 89% of the known and predicted protein kinases present in cell lysate. In MIB/MS competition assays, YK and MN demonstrated exquisite selectivity across the fungal kinome with target engagement of only three CK1 homologs (Yck2, Yck22, and Hrr25) and a homolog of human p38α (Hog1). Additional chemoproteomics using a custom MN-kinobead identified only one additional protein, confirming its remarkable fungal proteome-wide selectivity. To identify new Yck2 inhibitors with selectivity over Hog1, thirteen human CK1 kinase inhibitors were profiled for fungal kinase-binding activity using MIB/MS competition assays and in-cell NanoBRET target engagement assays. A new chemotype of family-selective Yck2 inhibitors with antifungal activity was identified. Together, these findings expand the application of MIB/MS proteomic profiling for non-human kinomes and demonstrate its utility in the discovery and development of selective inhibitors of fungal kinases with potential antimicrobial activity.

摘要

作为系统性念珠菌病的主要致病因子,它日益引起人们对健康的关注。系统性念珠菌病是一种危及生命的真菌感染,尽管采用了最佳治疗方法,其死亡率仍约为40%。Yck2是一种真菌酪蛋白激酶1(CK1)家族成员,是抑制剂YK-I-02(YK)和MN-I-157(MN)的细胞靶点。在这里,使用与质谱联用的多重抑制剂珠(MIB/MS),采用ATP竞争性激酶抑制剂来确定这些Yck2抑制剂在全球蛋白质组中的选择性。MIB基质捕获了细胞裂解物中89%的已知和预测蛋白激酶。在MIB/MS竞争试验中,YK和MN在真菌激酶组中表现出极高的选择性,仅与三种CK1同源物(Yck2、Yck22和Hrr25)以及人类p38α的同源物(Hog1)有靶点结合。使用定制的MN-激酶珠进行的额外化学蛋白质组学仅鉴定出一种额外的蛋白质,证实了其在真菌蛋白质组范围内具有显著的选择性。为了鉴定对Hog1具有选择性的新型Yck2抑制剂,使用MIB/MS竞争试验和细胞内纳米BRET靶点结合试验对13种人类CK1激酶抑制剂进行了真菌激酶结合活性分析。鉴定出了一种具有抗真菌活性的家族选择性Yck2抑制剂的新化学类型。总之,这些发现扩展了MIB/MS蛋白质组分析在非人类激酶组中的应用,并证明了其在发现和开发具有潜在抗菌活性的真菌激酶选择性抑制剂方面的效用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d9b/11741263/65d962c3c604/nihpp-2025.01.10.632200v1-f0002.jpg

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