首页> 外文期刊>The Plant Cell >Drought stress-induced Rma1H1, a RING membrane-anchor E3 ubiquitin ligase homolog, regulates aquaporin levels via ubiquitination in transgenic Arabidopsis plants.
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Drought stress-induced Rma1H1, a RING membrane-anchor E3 ubiquitin ligase homolog, regulates aquaporin levels via ubiquitination in transgenic Arabidopsis plants.

机译:干旱胁迫诱导的Rma1H1是RING膜锚E3泛素连接酶同源物,通过转基因拟南芥植物中的泛素化调节水通道蛋白的水平。

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Ubiquitination is involved in a variety of biological processes, but the exact role of ubiquitination in abiotic responses is not clearly understood in higher plants. Here, we investigated Rma1H1, a hot pepper (Capsicum annuum) homolog of a human RING membrane-anchor 1 E3 ubiquitin (Ub) ligase. Bacterially expressed Rma1H1 displayed E3 Ub ligase activity in vitro. Rma1H1 was rapidly induced by various abiotic stresses, including dehydration, and its overexpression in transgenic Arabidopsis thaliana plants conferred strongly enhanced tolerance to drought stress. Colocalization experiments with marker proteins revealed that Rma1H1 resides in the endoplasmic reticulum (ER) membrane. Overexpression of Rma1H1 in Arabidopsis inhibited trafficking of an aquaporin isoform PIP2;1 from the ER to the plasma membrane and reduced PIP2;1 levels in protoplasts and transgenic plants. This Rma1H1-induced reduction of PIP2;1 was inhibited by MG132, an inhibitor of the 26S proteasome. Furthermore, Rma1H1 interacted with PIP2;1 in vitro and ubiquitinated it in vivo. Similar to Rma1H1, Rma1, an Arabidopsis homolog of Rma1H1, localized to the ER, and its overexpression reduced the PIP2;1 protein level and inhibited trafficking of PIP2;1 from the ER to the plasma membrane in protoplasts. In addition, reduced expression of Rma homologs resulted in the increased level of PIP2;1 in protoplasts. We propose that Rma1H1 and Rma1 play a critical role in the downregulation of plasma membrane aquaporin levels by inhibiting aquaporin trafficking to the plasma membrane and subsequent proteasomal degradation as a response to dehydration in transgenic Arabidopsis plants.
机译:泛素化涉及多种生物学过程,但是在高等植物中,泛素化在非生物反应中的确切作用尚不清楚。在这里,我们研究了Rma1H1,这是人RING膜锚1 E3泛素(Ub)连接酶的辣椒(辣椒)同源物。细菌表达的Rma1H1在体外显示E3 Ub连接酶活性。 Rma1H1 被包括脱水在内的各种非生物胁迫快速诱导,并且在转基因拟南芥中的过表达大大增强了其对干旱胁迫的耐受性。与标记蛋白的共定位实验表明Rma1H1驻留在内质网(ER)膜中。 Rma1H1 在拟南芥中的过表达抑制了水通道蛋白同工型PIP2; 1从ER转运到质膜,并降低了原生质体和转基因植物中的PIP2; 1水平。 Rma1H1诱导的PIP2; 1的减少被MG132(26S蛋白酶体的抑制剂)抑制。此外,Rma1H1在体外与PIP2; 1相互作用,并在体内泛素化。与Rma1H1类似,Rma1是Rma1H1的拟南芥同源基因,位于ER上,其过表达降低了PIP2; 1的蛋白水平并抑制了PIP2; 1从ER到原生质体中质膜的运输。 。此外,减少 Rma 同源物的表达导致原生质体中PIP2; 1的水平增加。我们提出,Rma1H1和Rma1通过抑制水通道蛋白向质膜的运输和随后的蛋白酶体降解,作为对转基因拟南芥植物中脱水的响应,在下调质膜水通道蛋白中起关键作用。

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