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Natural and targeted isovariants of the rice actin depolymerizing factor 2 can alter its functional and regulatory binding properties

机译:水稻肌动蛋白解聚因子2的天然和有针对性的离子体可以改变其功能性和调节性结合性能

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Actin depolymerizing factors (ADFs) are ubiquitous actin-binding proteins that play essential roles in maintaining cellular actin dynamics by depolymerizing/severing F-actin. Plant ADF isoforms show functional divergence via differential biochemical and cellular properties. We have shown previously that ADF2 of rice (OsADF2) and smooth cordgrass (SaADF2) displayed contrasting biochemical properties and stress response in planta. As a proof-of-concept that amino acid variances contribute to such functional difference, single amino acid mutants of OsADF2 were generated based on its sequence differences with SaADF2. Biochemical studies showed that the single-site amino acid mutations altered actin binding, depolymerizing, and severing properties of OsADF2. Phosphosensitive mutations, such as serine-6>threonine, changed the regulatory phosphorylation efficiency of ADF2variants. The N-terminal mutations had greater effect on the phosphorylation pattern of OsADF2, whereas C-terminal mutations affected actin binding and severing. The presence of introduced mutations in isovariants of monocot ADF suggests that these residues are significant control points regulating their functional divergence, including abiotic stress response.
机译:肌动蛋白解聚因子(ADF)是普遍存在的肌动蛋白结合蛋白,其通过解聚/切断F-Actin来起到保持细胞肌动蛋白动态的基本作用。植物ADF同种型通过差分生化和细胞性能显示功能性分歧。我们先前已经显示过稻米(OSADF2)的ADF2和平稳的CordGrass(Saadf2)显示了植物中的生化性质和应力反应。作为概念的证据,即氨基酸差异有助于这种功能差异,基于与Saadf2的序列差异产生OSADF2的单个氨基酸突变体。生物化学研究表明,单位氨基酸突变改变了OSADF2的肌动蛋白结合,解聚和切割性质。磷酸化突变,例如丝氨酸-6>苏氨酸,改变了Adf2 variants的调节磷酸化效率。 N-末端突变对OSADF2的磷酸化模式具有更大的影响,而C末端突变受到actin结合和切断的影响。单焦癌癌的异叶中引入突变的存在表明,这些残留物是调节其功能性分歧的显着控制点,包括非生物应激反应。

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