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靶向降解 zDHHC-PATs 可减少底物 S-棕榈酰化。

Targeted degradation of zDHHC-PATs decreases substrate S-palmitoylation.

机构信息

School of Cardiovascular & Metabolic Health, College of Medical Veterinary and Life Sciences, University of Glasgow, Glasgow, United Kingdom.

School of Chemistry, University of Glasgow, Glasgow, United Kingdom.

出版信息

PLoS One. 2024 Mar 21;19(3):e0299665. doi: 10.1371/journal.pone.0299665. eCollection 2024.

Abstract

Reversible S-palmitoylation of protein cysteines, catalysed by a family of integral membrane zDHHC-motif containing palmitoyl acyl transferases (zDHHC-PATs), controls the localisation, activity, and interactions of numerous integral and peripheral membrane proteins. There are compelling reasons to want to inhibit the activity of individual zDHHC-PATs in both the laboratory and the clinic, but the specificity of existing tools is poor. Given the extensive conservation of the zDHHC-PAT active site, development of isoform-specific competitive inhibitors is highly challenging. We therefore hypothesised that proteolysis-targeting chimaeras (PROTACs) may offer greater specificity to target this class of enzymes. In proof-of-principle experiments we engineered cell lines expressing tetracycline-inducible Halo-tagged zDHHC5 or zDHHC20, and evaluated the impact of Halo-PROTACs on zDHHC-PAT expression and substrate palmitoylation. In HEK-derived FT-293 cells, Halo-zDHHC5 degradation significantly decreased palmitoylation of its substrate phospholemman, and Halo-zDHHC20 degradation significantly diminished palmitoylation of its substrate IFITM3, but not of the SARS-CoV-2 spike protein. In contrast, in a second kidney derived cell line, Vero E6, Halo-zDHHC20 degradation did not alter palmitoylation of either IFITM3 or SARS-CoV-2 spike. We conclude from these experiments that PROTAC-mediated targeting of zDHHC-PATs to decrease substrate palmitoylation is feasible. However, given the well-established degeneracy in the zDHHC-PAT family, in some settings the activity of non-targeted zDHHC-PATs may substitute and preserve substrate palmitoylation.

摘要

蛋白质半胱氨酸的可逆 S-棕榈酰化作用由一类包含整膜 zDHHC 基序的棕榈酰基转移酶(zDHHC-PAT)家族催化,控制着许多整合和外周膜蛋白的定位、活性和相互作用。无论是在实验室还是在临床上,都有充分的理由需要抑制个别 zDHHC-PAT 的活性,但现有的工具特异性较差。鉴于 zDHHC-PAT 活性位点的广泛保守性,开发同工型特异性竞争性抑制剂极具挑战性。因此,我们假设蛋白水解靶向嵌合体(PROTAC)可能为靶向这类酶提供更高的特异性。在原理验证实验中,我们构建了表达四环素诱导的 Halo 标记的 zDHHC5 或 zDHHC20 的细胞系,并评估了 Halo-PROTAC 对 zDHHC-PAT 表达和底物棕榈酰化的影响。在 HEK 衍生的 FT-293 细胞中,Halo-zDHHC5 降解显著降低了其底物磷酸烯醇式丙酮酸酶的棕榈酰化,而 Halo-zDHHC20 降解显著降低了其底物 IFITM3 的棕榈酰化,但不影响 SARS-CoV-2 刺突蛋白。相比之下,在另一种来源于肾脏的细胞系 Vero E6 中,Halo-zDHHC20 降解没有改变 IFITM3 或 SARS-CoV-2 刺突蛋白的棕榈酰化。我们从这些实验中得出结论,PROTAC 介导的 zDHHC-PAT 靶向以降低底物棕榈酰化是可行的。然而,鉴于 zDHHC-PAT 家族中存在的良好的简并性,在某些情况下,非靶向 zDHHC-PAT 的活性可能会替代并维持底物的棕榈酰化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/38e3/10956751/8d2a59571802/pone.0299665.g001.jpg

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