Laboratory of Chemical Biology and Microbial Pathogenesis, The Rockefeller University, New York, New York, United States of America.
PLoS Biol. 2013 Jul;11(7):e1001597. doi: 10.1371/journal.pbio.1001597. Epub 2013 Jul 2.
Protein S-palmitoylation, a lipid modification mediated by members of the palmitoyltransferase family, serves as an important membrane-targeting mechanism in eukaryotes. Although changes in palmitoyltransferase expression are associated with various physiological and disease states, how these changes affect global protein palmitoylation and cellular function remains unknown. Using a bioorthogonal chemical reporter and labeling strategy to identify and analyze multiple cognate substrates of a single Erf2 palmitoyltransferase, we demonstrate that control of Erf2 activity levels underlies the differential modification of key substrates such as the Rho3 GTPase in vegetative and meiotic cells. We show further that modulation of Erf2 activity levels drives changes in the palmitoylome as cells enter meiosis and affects meiotic entry. Disruption of Erf2 function delays meiotic entry, while increasing Erf2 palmitoyltransferase activity triggers aberrant meiosis in sensitized cells. Erf2-induced meiosis requires the function of the Rho3 GTPase, which is regulated by its palmitoylation state. We propose that control of palmitoyltransferase activity levels provides a fundamental mechanism for modulating palmitoylomes and cellular functions.
蛋白质 S-棕榈酰化是一种由棕榈酰转移酶家族成员介导的脂质修饰,作为真核生物中一种重要的膜靶向机制。虽然棕榈酰转移酶表达的变化与各种生理和疾病状态有关,但这些变化如何影响全局蛋白质棕榈酰化和细胞功能仍不清楚。我们使用生物正交化学报告和标记策略来鉴定和分析单个 Erf2 棕榈酰转移酶的多个同源底物,证明在营养细胞和有丝分裂细胞中,Erf2 活性水平的控制是关键底物(如 Rho3 GTPase)的差异修饰的基础。我们进一步表明,Erf2 活性水平的调节会导致进入有丝分裂时棕榈酰组的变化,并影响有丝分裂的进入。Erf2 功能的破坏会延迟有丝分裂的进入,而增加 Erf2 棕榈酰转移酶活性会在敏感细胞中引发异常的有丝分裂。Erf2 诱导的有丝分裂需要 Rho3 GTPase 的功能,而 Rho3 GTPase 的功能受到其棕榈酰化状态的调节。我们提出,棕榈酰转移酶活性水平的控制为调节棕榈酰组和细胞功能提供了一个基本机制。