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Hydrogen Sulfide Disturbs Actin Polymerization via S-Sulfhydration Resulting in Stunted Root Hair Growth

机译:硫化氢通过S-硫磺化干扰肌动蛋白的聚合导致根毛生长发育迟缓

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摘要

Hydrogen sulfide (H2S) is an important signaling molecule in plants. Our previous report suggested that H2S signaling affects the actin cytoskeleton and root hair growth. However, the underlying mechanisms of its effects are not understood. S-Sulfhydration of proteins is regulated directly by H2S, which converts the thiol groups of cysteine (Cys) residues to persulfides and alters protein function. In this work, we studied the effects of S-sulfhydration on actin dynamics in Arabidopsis (Arabidopsis thaliana). We generated transgenic plants overexpressing the H2S biosynthesis-related genes l-CYSTEINE DESULFHYDRASE (LCD) and d-CYSTEINE DESULFHYDRASE in the O-acetylserine(thiol)lyase isoform a1 (oasa1) mutant and Columbia-0 backgrounds. The H2S content increased significantly in overexpressing LCD/oasa1 plants. The density of filamentous actin (F-actin) bundles and the F-actin/globular actin ratio decreased in overexpressing LCD/oasa1 plants. S-Sulfhydration also was enhanced in overexpressing LCD/oasa1 plants. An analysis of actin dynamics suggested that S-sulfhydration inhibited actin polymerization. We also found that ACTIN2 (ACT2) was S-sulfhydrated at Cys-287. Cys-287 is adjacent to the D-loop, which acts as a central region for hydrophobic and electrostatic interactions and stabilizes F-actin filaments. Overaccumulation of H2S caused the depolymerization of F-actin bundles and inhibited root hair growth. Introduction of ACT2 carrying a Cys-287-to-Ser mutation into an act2-1 mutant partially suppressed H2S-dependent inhibition of root hair growth. We conclude that H2S regulates actin dynamics and affects root hair growth.
机译:硫化氢(H2S)是植物中重要的信号分子。我们以前的报告表明,H2S信号传导会影响肌动蛋白的细胞骨架和根毛的生长。但是,尚不清楚其作用的潜在机制。蛋白质的S巯基化直接受H2S调节,H2S将半胱氨酸(Cys)残基的硫醇基转化为过硫化物并改变蛋白质的功能。在这项工作中,我们研究了S硫磺化对拟南芥(Arabidopsis thaliana)中肌动蛋白动力学的影响。我们生成了在O-乙酰丝氨酸(硫醇)裂解酶同工型a1(oasa1)突变体和Columbia-0背景中过表达H2S生物合成相关基因l-半胱氨酸脱硫酶(LCD)和d-半胱氨酸脱硫酶的转基因植物。过表达LCD / oasa1植物中的H2S含量显着增加。在过表达的LCD / oasa1植物中,丝状肌动蛋白(F-肌动蛋白)束的密度和F-肌动蛋白/球状肌动蛋白比率降低。在过表达的LCD / oasa1植物中,S-硫酸化作用也得到增强。肌动蛋白动力学分析表明,S-硫酸化抑制了肌动蛋白聚合。我们还发现ACTIN2(ACT2)在Cys-287处被 S 硫酸化。 Cys-287与D环相邻,D环充当疏水和静电相互作用的中心区域,并稳定F-肌动蛋白丝。 H2S的过度积累导致F-肌动蛋白束解聚并抑制了根毛的生长。将带有Cys-287-to-Ser突变体的 ACT2 引入 act2-1 突变体中,部分抑制了H2S依赖性的根毛生长抑制。我们得出的结论是,H2S调节肌动蛋白的动力学并影响根毛的生长。

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