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Mlo, a modulator of plant defense and cell death, is a novel calmodulin-binding protein - Isolation and characterization of a rice Mlo homologue

机译:Mlo是植物防御和细胞死亡的调节剂,是一种新型钙调蛋白结合蛋白-水稻Mlo同源物的分离和鉴定

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摘要

Transient influx of Ca2+ constitutes an early event in the signaling cascades that trigger plant defense responses. However, the downstream components of defense-associated Ca2+ signaling are largely unknown. Because Ca2+ signals are mediated by Ca2+-binding proteins, including calmodulin (CaM), identification and characterization of CaM-binding proteins elicited by pathogens should provide insights into the mechanism by which Ca2+ regulates defense responses. In this study, we isolated a gene encoding rice Mlo (Oryza sativa Mlo; OsMlo) using a protein-protein interaction-based screening of a cDNA expression library constructed from pathogen-elicited rice suspension cells. OsMlo has a molecular mass of 62 kDa and shares 65% sequence identity and scaffold topology with barley Mlo, a heptahelical transmembrane protein known to function as a negative regulator of broad spectrum disease resistance and leaf cell death. By using gel overlay assays, we showed that OsMlo produced in Escherichia coli binds to soybean CaM isoform-1 (SCaM-1) in a Ca2+-dependent manner. We located a 20-amino acid CaM-binding domain (CaMBD) in the OsMlo C-terminal cytoplasmic tail that is necessary and sufficient for Ca2+-dependent CaM complex formation. Specific binding of the conserved CaMBD to CaM was corroborated by site-directed mutagenesis, a gel mobility shift assay, and a competition assay with a Ca2+/CaM-dependent enzyme. Expression of OsMlo was strongly induced by a fungal pathogen and by plant defense signaling molecules. We propose that binding of Ca2+-loaded CaM to the C-terminal tail may be a common feature of Mlo proteins.
机译:Ca2 +的瞬时流入构成触发植物防御反应的信号级联反应的早期事件。但是,防御相关的Ca2 +信号传导的下游成分在很大程度上是未知的。因为Ca2 +信号是由包括钙调蛋白(CaM)在内的Ca2 +结合蛋白介导的,所以病原体引起的CaM结合蛋白的鉴定和表征应该提供对Ca2 +调节防御反应机制的见解。在这项研究中,我们使用基于蛋白质-蛋白质相互作用的从病原体诱导的水稻悬液细胞构建的cDNA表达文库的筛选,分离了编码水稻Mlo(Oryza sativa Mlo; OsMlo)的基因。 OsMlo的分子量为62 kDa,与大麦Mlo具有65%的序列同一性和支架拓扑结构,大麦Mlo是一种七螺旋状跨膜蛋白,已知可作为广谱抗病性和叶细胞死亡的负调节剂。通过使用凝胶覆盖分析,我们表明在大肠杆菌中产生的OsMlo以Ca2 +依赖的方式与大豆CaM isoform-1(SCaM-1)结合。我们在OsMlo C末端胞质尾部中定位了20个氨基酸的CaM结合域(CaMBD),这对于形成依赖Ca2 +的CaM复合物来说是必要和充分的。保守的CaMBD与CaM的特异性结合通过定点诱变,凝胶迁移率移动分析和与Ca2 + / CaM依赖的酶的竞争分析得到证实。 OsMlo的表达被真菌病原体和植物防御信号分子强烈诱导。我们提出,Ca2 +负载的CaM与C末端尾部的结合可能是Mlo蛋白的共同特征。

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