Halder Tanmoy, Agarwal Tanushree, Ray Sudipta
Department of Botany, Centre of Advanced Study, University of Calcutta, 35 Ballygunge Circular Road, Kolkata, 700019, India.
Protoplasma. 2016 Nov;253(6):1475-1488. doi: 10.1007/s00709-015-0901-7. Epub 2015 Nov 4.
Plants can produce their own set of defense molecules in an attempt to survive under stressed conditions. Dehydrins play a considerable role in protecting the plants under varied stress situations. We have isolated a novel SK3 type dehydrin from Sorghum capable of protecting the enzyme lactate dehydrogenase in vitro under both cold and high temperature. This protein showed non-canonical migration in a sodium dodecyl sulfate polyacrylamide gel electrophoresis (SDS-PAGE) due to the high hydrophilicity of the protein. The high percentage of glycine and histidine residues present in the protein sequence is responsible for the radical scavenging activity of the protein. The protein also exhibited binding affinity to metal ions owing to the histidine-rich motifs, therefore chelating the metal ions and making them unavailable to systems responsible for generation of reactive oxygen species (ROS). In the presence of specific metal ions, the protein showed reversible aggregation with certain degree of protease resistivity along with induction of secondary structures. The resistivity of the protein to degradation might be implicated in stress situations, thus leading to an increase in the shelf life of the protein. Association with metal ions like copper and zinc at a fairly low concentration increased the protective effect of the SbDHN2 protein for lactate dehydrogenase (LDH) activity to a considerable extent. The synthesis of this dehydrin in stressed plants might help the plant in rendering stress tolerance.
植物能够产生自身的一套防御分子,试图在胁迫条件下存活。脱水素在保护植物应对各种胁迫情况中发挥着重要作用。我们从高粱中分离出一种新型SK3型脱水素,它能够在低温和高温条件下体外保护乳酸脱氢酶。由于该蛋白质具有高亲水性,在十二烷基硫酸钠聚丙烯酰胺凝胶电泳(SDS-PAGE)中呈现非典型迁移。蛋白质序列中高比例的甘氨酸和组氨酸残基赋予了该蛋白质自由基清除活性。由于富含组氨酸的基序,该蛋白质还表现出对金属离子的结合亲和力,从而螯合金属离子,使其无法参与负责产生活性氧(ROS)的系统。在特定金属离子存在下,该蛋白质表现出可逆聚集,并具有一定程度的蛋白酶抗性以及二级结构的诱导。该蛋白质对降解的抗性可能与胁迫情况有关,从而导致蛋白质保质期延长。在相当低的浓度下与铜和锌等金属离子结合,可在很大程度上提高SbDHN2蛋白对乳酸脱氢酶(LDH)活性的保护作用。在受胁迫植物中合成这种脱水素可能有助于植物获得胁迫耐受性。