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一种类钙调蛋白的EF手型蛋白通过与启动子的E盒元件相互作用来正向调节草酸脱羧酶的表达。

A calmodulin like EF hand protein positively regulates oxalate decarboxylase expression by interacting with E-box elements of the promoter.

作者信息

Kamthan Ayushi, Kamthan Mohan, Kumar Avinash, Sharma Pratima, Ansari Sekhu, Thakur Sarjeet Singh, Chaudhuri Abira, Datta Asis

机构信息

National Institute of Plant Genome Research, New Delhi, India.

出版信息

Sci Rep. 2015 Oct 12;5:14578. doi: 10.1038/srep14578.

Abstract

Oxalate decarboxylase (OXDC) enzyme has immense biotechnological applications due to its ability to decompose anti-nutrient oxalic acid. Flammulina velutipes, an edible wood rotting fungus responds to oxalic acid by induction of OXDC to maintain steady levels of pH and oxalate anions outside the fungal hyphae. Here, we report that upon oxalic acid induction, a calmodulin (CaM) like protein-FvCaMLP, interacts with the OXDC promoter to regulate its expression. Electrophoretic mobility shift assay showed that FvCamlp specifically binds to two non-canonical E-box elements (AACGTG) in the OXDC promoter. Moreover, substitutions of amino acids in the EF hand motifs resulted in loss of DNA binding ability of FvCamlp. F. velutipes mycelia treated with synthetic siRNAs designed against FvCaMLP showed significant reduction in FvCaMLP as well as OXDC transcript pointing towards positive nature of the regulation. FvCaMLP is different from other known EF hand proteins. It shows sequence similarity to both CaMs and myosin regulatory light chain (Cdc4), but has properties typical of a calmodulin, like binding of (45)Ca(2+), heat stability and Ca(2+) dependent electrophoretic shift. Hence, FvCaMLP can be considered a new addition to the category of unconventional Ca(2+) binding transcriptional regulators.

摘要

草酸脱羧酶(OXDC)因其具有分解抗营养物质草酸的能力而具有巨大的生物技术应用价值。金针菇是一种可食用的木腐真菌,它通过诱导OXDC来应对草酸,以维持真菌菌丝体外pH值和草酸根阴离子的稳定水平。在此,我们报告,在草酸诱导下,一种类钙调蛋白(CaM)——FvCaMLP,与OXDC启动子相互作用以调节其表达。电泳迁移率变动分析表明,FvCamlp特异性结合OXDC启动子中的两个非典型E盒元件(AACGTG)。此外,EF手基序中的氨基酸替换导致FvCamlp丧失DNA结合能力。用针对FvCaMLP设计的合成siRNA处理的金针菇菌丝体显示,FvCaMLP以及OXDC转录本显著减少,表明这种调节具有正向性质。FvCaMLP不同于其他已知的EF手蛋白。它与CaM和肌球蛋白调节轻链(Cdc4)均具有序列相似性,但具有钙调蛋白的典型特性,如结合(45)Ca(2+)、热稳定性和Ca(2+)依赖性电泳迁移。因此,FvCaMLP可被视为非常规Ca(2+)结合转录调节因子类别中的新成员。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0688/4600981/822b017744ac/srep14578-f1.jpg

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