Verma Preeti, Patel Girijesh K, Kar Bibekananda, Sharma Ashwani K
Department of Biotechnology, Indian Institute of Technology Roorkee, Roorkee, 247 667, India.
Department of Biotechnology, Indian Institute of Technology Roorkee, Roorkee, 247 667, India.
Plant Sci. 2017 Jul;260:19-30. doi: 10.1016/j.plantsci.2017.03.013. Epub 2017 Mar 30.
The attainment of new function by a protein is achieved through convergent/divergent evolution. In present work, the sequence analysis of a 34kDa protein from Putranjiva roxburghii, earlier reported as a potent trypsin inhibitor, showed resemblance to some of the wound inducible and vegetative storage proteins. A detailed sequence analysis revealed that these proteins belong to PNP-UDP family. In case of P. roxburghii protein, an approximately 46 residue insert disrupts the PNP domain. Similar disruption of PNP domain is observed in related plant proteins. The characterization of recombinant full length and truncated (without 46 residue insert) forms of P. roxburghii PNP family protein (PRpnp) unraveled that trypsin inhibitory active site is located within the insert. The truncated form containing uninterrupted PNP domain showed strong PNP enzymatic activity where it hydrolyzed the N-glycosidic bond of inosine and guanosine. The full length protein, however, showed weak PNP enzyme activity which may be due to presence of the insert. These results indicate towards the neofunctionalization of PRpnp to a potent trypsin inhibitor through an insert containing inhibitory residue to cater to the needs of plant defense. The similar wound inducible and vegetative storage proteins may have also evolved due to evolutionary needs.
蛋白质新功能的获得是通过趋同/趋异进化实现的。在目前的工作中,对之前报道为强效胰蛋白酶抑制剂的刺果树(Putranjiva roxburghii)中一种34kDa蛋白质的序列分析表明,它与一些伤口诱导型和营养贮藏蛋白相似。详细的序列分析显示,这些蛋白质属于PNP-UDP家族。就刺果树蛋白质而言,一个约46个残基的插入片段破坏了PNP结构域。在相关植物蛋白质中也观察到了类似的PNP结构域破坏。对刺果树PNP家族蛋白质(PRpnp)的重组全长和截短形式(不含46个残基插入片段)的表征揭示,胰蛋白酶抑制活性位点位于该插入片段内。含有不间断PNP结构域的截短形式表现出很强的PNP酶活性,它能水解肌苷和鸟苷的N-糖苷键。然而,全长蛋白质表现出较弱的PNP酶活性,这可能是由于插入片段的存在。这些结果表明,PRpnp通过含有抑制性残基的插入片段实现了向强效胰蛋白酶抑制剂的新功能化,以满足植物防御的需要。类似的伤口诱导型和营养贮藏蛋白也可能是由于进化需要而进化的。