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Sucrose non-fermenting 1-related protein kinase 2 (SnRK2): a family of protein kinases involved in hyperosmotic stress signaling

机译:蔗糖非发酵1相关蛋白激酶2(SnRK2):参与高渗应激信号传导的蛋白激酶家族

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摘要

Our understanding of plant adaptation to abiotic stresses, which include drought, salinity, non-optimal temperatures and poor soil nutrition, is limited, although significant strides have been made in identifying some of the gene players and signaling partners. Several protein kinases get activated in plants in response to osmotic stress and the stress hormone abscisic acid (ABA). Among these is a superfamily of sucrose non-fermenting protein kinase genes (SnRK2). This review focuses on the developments related to the activity, substrates, interacting proteins and gene regulation of SnRK2 gene family members. Reversible phosphorylation as a crucial regulatory mechanism turns out to be a rule rather than an exception in plant responses to abiotic stress. Nine out of thirteen bZIP transcription factors (ABI5/ABF/AREB family) share the recognition motif, R-Q-X-S/T, suggesting that likely SnRK2 kinases have a major role in regulating gene expression during hyperosmotic stress.
机译:尽管我们在确定某些基因参与者和信号传递伙伴方面已取得重大进展,但我们对植物适应非生物胁迫(包括干旱,盐分,非最佳温度和不良土壤营养)的理解是有限的。几种蛋白质激酶在植物中响应渗透胁迫和胁迫激素脱落酸(ABA)活化。其中一个是蔗糖非发酵蛋白激酶基因(SnRK2)的超家族。这篇综述着重于与SnRK2基因家族成员的活性,底物,相互作用蛋白和基因调控有关的发展。可逆的磷酸化作为一种​​关键的调节机制,在植物对非生物胁迫的反应中被证明是规则而不是例外。 13个bZIP转录因子(ABI5 / ABF / AREB家族)中有9个共享识别基序R-Q-X-S / T,这表明可能的SnRK2激酶在高渗胁迫期间在调节基因表达中起主要作用。

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