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谷氧还蛋白通过调控 TGA 转录活性的氧化还原作用来调节玉米花序分生组织的发育。

Glutaredoxins regulate maize inflorescence meristem development via redox control of TGA transcriptional activity.

机构信息

National Key Laboratory of Crop Genetic Improvement, Hubei Hongshan Laboratory, Huazhong Agricultural University, Wuhan, China.

Cold Spring Harbor Laboratory, Cold Spring Harbor, NY, USA.

出版信息

Nat Plants. 2021 Dec;7(12):1589-1601. doi: 10.1038/s41477-021-01029-2. Epub 2021 Dec 14.

Abstract

Glutaredoxins (GRXs) are small oxidoreductases that can modify target protein activities through control of the redox (reduction/oxidation) state by reducing or glutathionylating disulfide bridges. Although CC-type GRXs are plant specific and play important roles in many processes, the mechanisms by which they modulate the activity of target proteins in vivo are unknown. In this study, we show that a maize CC-type GRX, MALE STERILE CONVERTED ANTHER1 (MSCA1), acts redundantly with two paralogues, ZmGRX2 and ZmGRX5, to modify the redox state and the activity of its putative target, the TGA transcription factor FASCIATED EAR4 (FEA4) that acts as a negative regulator of inflorescence meristem development. We used CRISPR-Cas9 to create a GRX triple knockout, resulting in severe suppression of meristem, ear and tassel growth and reduced plant height. We further show that GRXs regulate the redox state, DNA accessibility and transcriptional activities of FEA4, which acts downstream of MSCA1 and its paralogues to control inflorescence development. Our findings reveal the function of GRXs in meristem development, and also provide direct evidence for GRX-mediated redox modification of target proteins in plants.

摘要

谷氧还蛋白(GRXs)是一类小分子氧化还原酶,可以通过还原或谷胱甘肽化二硫键来控制氧化还原(还原/氧化)状态,从而改变靶蛋白的活性。虽然 CC 型 GRXs 是植物特有的,在许多过程中发挥着重要作用,但它们在体内调节靶蛋白活性的机制尚不清楚。在本研究中,我们表明,玉米 CC 型 GRX,MALE STERILE CONVERTED ANTHER1(MSCA1),与两个同源物 ZmGRX2 和 ZmGRX5 共同作用,以改变其假定靶标 TGA 转录因子 FASCIATED EAR4(FEA4)的氧化还原状态和活性,FEA4 作为花序分生组织发育的负调控因子。我们使用 CRISPR-Cas9 技术创建了 GRX 三重敲除突变体,导致分生组织、穗和小穗生长严重抑制,株高降低。我们进一步表明,GRXs 调节 FEA4 的氧化还原状态、DNA 可及性和转录活性,FEA4 作为 MSCA1 及其同源物的下游因子,控制花序发育。我们的研究结果揭示了 GRXs 在分生组织发育中的功能,也为植物中 GRX 介导的靶蛋白氧化还原修饰提供了直接证据。

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