School of Chemistry, University of Hyderabad, Hyderabad, 500046, India.
School of Chemistry, University of Hyderabad, Hyderabad, 500046, India.
Int J Biol Macromol. 2018 Jan;106:95-100. doi: 10.1016/j.ijbiomac.2017.07.173. Epub 2017 Aug 1.
In plants, chitooligosaccharide-binding phloem exudate lectins play an important role in the defense mechanism against parasites. Here, we investigated the thermal and chaotrope-induced unfolding of cucumber (Cucumis sativus) phloem exudate lectin (CPL). Circular dichroism (CD) spectroscopic studies indicate that the secondary and tertiary structures of CPL are essentially unaltered up to 90°C. Consistent with this, differential scanning calorimetric studies revealed that CPL is highly thermostable and undergoes a cooperative thermal unfolding transition centered at 97.6°C. The unfolding process was calorimetrically irreversible, and could be described by a non-two-state model, suggesting that upon undergoing a reversible unfolding transition the protein attains a final state in an irreversible step. The ratio of calorimetric and van't Hoff enthalpies (ΔH/ΔH) was >1.0, suggesting that the two monomers in the dimeric protein unfold at the same temperature. CD spectra recorded at different pH indicated that the secondary and tertiary structures of the protein are nearly unaltered in the pH range 3.0-10.0. Guanidine hydrochloride-induced unfolding studies indicate that chemical denaturation of CPL can also be described by a two-state process, without involving any intermediate. The stability of CPL to high temperatures and large variations of pH appear to be particularly suited for its role in plant defense.
在植物中,几丁寡糖结合韧皮部渗出液凝集素在抵御寄生虫的防御机制中起着重要作用。在这里,我们研究了黄瓜(Cucumis sativus)韧皮部渗出液凝集素(CPL)的热变性和变溶剂诱导变性。圆二色性(CD)光谱研究表明,CPL 的二级和三级结构在 90°C 以下基本不变。与此一致,差示扫描量热法研究表明,CPL 具有高度热稳定性,并在 97.6°C 左右经历协同的热变性转变。变性过程是量热不可逆的,可以用非二态模型来描述,这表明在经历可逆变性转变后,蛋白质在不可逆步骤中达到最终状态。量热和范特霍夫焓(ΔH/ΔH)的比值大于 1.0,表明二聚体蛋白中的两个单体在相同的温度下展开。在不同 pH 值下记录的 CD 光谱表明,该蛋白的二级和三级结构在 pH 3.0-10.0 范围内几乎没有变化。盐酸胍诱导的变性研究表明,CPL 的化学变性也可以用二态过程来描述,而不涉及任何中间态。CPL 对高温和 pH 值大范围变化的稳定性似乎特别适合其在植物防御中的作用。