Singh Shilpi, Singh Prem Pal
Molecular Biology Section, Laboratory of Algal Biology, Center of Advanced Study in Botany, Banaras Hindu University, Varanasi-221005.
Bioinformation. 2013 Jul 17;9(13):701-6. doi: 10.6026/97320630009701. Print 2013.
Butachlor, a commonly used herbicide adversely affects the nitrogen fixing capability of Anabaena, an acclaimed nitrogen fixer in the Indian paddy fields. The nitrogen fixation in Anabaena is triggered by the excision of nifD element by xisA gene leading to rearrangement of nifD forming nifHDK operon in the heterocyst of Anabaena sp. PCC7120. Functional elucidation adjudged through in-silico analysis revealed that xisA belongs to integrase family of tyrosine recombinase. The predicted functional partners with XisA protein that have shown cooccurence with this protein in a network are mainly hypothetical proteins with unknown functions except psaK1 whose exact function in photosystem I is not yet known. The focus of this study was to find out the relation between XisA and butachlor using in-silico approaches. The XisA protein was modeled and its active sites were identified. Docking studies revealed that butachlor binds at the active site of XisA protein hampering its excision ability vis-à-vis nif genes in Anabaena sp. PCC7120. This study reveals that butachlor is not directly involved in hampering the nitrogen fixing ability of Anabaena sp. PCC7120 but by arresting the excision ability of XisA protein necessary for the functioning of nif gene and nitrogen fixation.
丁草胺是一种常用除草剂,会对鱼腥藻的固氮能力产生不利影响,鱼腥藻是印度稻田中一种著名的固氮生物。鱼腥藻中的固氮作用是由xisA基因切除nifD元件引发的,导致nifD重排,在鱼腥藻PCC7120的异形胞中形成nifHDK操纵子。通过计算机模拟分析进行的功能阐释表明,xisA属于酪氨酸重组酶的整合酶家族。在网络中与XisA蛋白共同出现的预测功能伙伴,除了psaK1外,主要是功能未知的假设蛋白,而psaK1在光系统I中的具体功能尚不清楚。本研究的重点是利用计算机模拟方法找出XisA与丁草胺之间的关系。对XisA蛋白进行了建模并确定了其活性位点。对接研究表明,丁草胺与XisA蛋白的活性位点结合,阻碍了其对鱼腥藻PCC7120中nif基因的切除能力。这项研究表明,丁草胺并非直接参与阻碍鱼腥藻PCC7120的固氮能力,而是通过抑制nif基因功能和固氮所需的XisA蛋白的切除能力来实现的。