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AMPK 激活剂 991 特异性激活 SnRK1,从而影响水稻种子的萌发。

AMPK activator 991 specifically activates SnRK1 and thereby affects seed germination in rice.

机构信息

College of Agriculture, Nanjing Agricultural University, Nanjing, China.

Key Laboratory of Crop Physiology & Ecology in Southern China, Ministry of Agricultural University, Nanjing, China.

出版信息

J Exp Bot. 2024 May 20;75(10):2917-2932. doi: 10.1093/jxb/erae046.

Abstract

Sucrose non-fermenting-1-related protein kinase 1 (SnRK1) and AMP-activated protein kinase (AMPK) are highly conserved. Compound 991 is an AMPK activator in mammals. However, whether 991 also activates SnRK1 remains unknown. The addition of 991 significantly increased SnRK1 activity in desalted extracts from germinating rice seeds in vitro. To determine whether 991 has biological activity, rice seeds were treated with different concentrations of 991. Germination was promoted at low concentrations but inhibited at high concentrations. The effects of 991 on germination were similar to those of OsSnRK1a overexpression. To explore whether 991 affects germination by specifically affecting SnRK1, germination of an snrk1a mutant and the wild type under 1 μM 991 treatment was compared. The snrk1a mutant was insensitive to 991. Phosphoproteomic analysis showed that the differential phosphopeptides induced by 991 and OsSnRK1a overexpression largely overlapped. Furthermore, SnRK1 might regulate rice germination in a dosage-dependent manner by regulating the phosphorylation of three phosphosites, namely S285-PIP2;4, S1013-SOS1, and S110-ABI5. These results indicate that 991 is a specific SnRK1 activator in rice. The promotion and inhibition of germination by 991 also occurred in wheat seeds. Thus, 991 is useful for exploring SnRK1 function and the chemical regulation of growth and development in crops.

摘要

Sucrose non-fermenting-1-related protein kinase 1 (SnRK1) 和 AMP-activated protein kinase (AMPK) 高度保守。化合物 991 是哺乳动物中的一种 AMPK 激活剂。然而,991 是否也激活 SnRK1 尚不清楚。在体外去盐提取物中,991 的添加显著增加了发芽水稻种子中 SnRK1 的活性。为了确定 991 是否具有生物学活性,用不同浓度的 991 处理水稻种子。在低浓度下促进发芽,但在高浓度下抑制发芽。991 对发芽的影响与 OsSnRK1a 过表达的影响相似。为了探讨 991 是否通过特异性影响 SnRK1 来影响发芽,比较了 snrk1a 突变体和野生型在 1 μM 991 处理下的发芽情况。snrk1a 突变体对 991 不敏感。磷酸化蛋白质组学分析表明,991 和 OsSnRK1a 过表达诱导的差异磷酸肽大部分重叠。此外,SnRK1 可能通过调节三个磷酸化位点,即 S285-PIP2;4、S1013-SOS1 和 S110-ABI5 的磷酸化,以剂量依赖的方式调节水稻的萌发。这些结果表明,991 是水稻中一种特异性的 SnRK1 激活剂。991 对小麦种子萌发的促进和抑制作用也存在。因此,991 可用于探索 SnRK1 功能和作物生长发育的化学调控。

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