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A Spectroscopic Study on Secondary Structure and Thermal Unfolding of the Plant Toxin Gelonin Confirms Some Typical Structural Characteristics and Unravels the Sequence of Thermal Unfolding Events

机译:对植物毒素gelonin的二级结构和热解折叠的光谱研究证实了一些典型的结构特征并揭示了热解折叠事件的顺序

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摘要

Gelonin from the Indian plant Gelonium multiflorum belongs to the type I ribosome-inactivating proteins (RIPs). Like other members of RIPs, this toxin glycoprotein inhibits protein synthesis of eukaryotic cells; hence, it is largely used in the construction of immunotoxins composed of cell-targeted antibodies. Lysosomal degradation is one of the main issues in targeted tumor therapies, especially for type I RIP-based toxins, as they lack the translocation domains. The result is an attenuated cytosolic delivery and a decrease of the antitumor efficacy of these plant-derived toxins; therefore, strategies to permit their release from endosomal vesicles or modifications of the toxins to make them resistant to degradation are necessary to improve their efficacy. Using infrared spectroscopy, we thoroughly analyzed both the secondary structure and the thermal unfolding of gelonin. Moreover, by the combination of two-dimensional correlation spectroscopy and phase diagram method, it was possible to deduce the sequence of events during the unfolding, confirming the typical characteristic of the RIP members to denature in two steps, as a sequential loss of tertiary and secondary structure was detected at 58 °C and at 65 °C, respectively. Additionally, some discrepancies in the unfolding process between gelonin and saporin-S6, another type I RIP protein, were detected.
机译:来自印度植物何首乌(Gelonium multiflorum)的Gelonin属于I型核糖体失活蛋白(RIP)。像其他RIP成员一样,这种毒素糖蛋白抑制真核细胞的蛋白质合成。因此,它主要用于构建由细胞靶向抗体组成的免疫毒素。溶酶体降解是靶向肿瘤治疗中的主要问题之一,尤其是基于I RIP的毒素,因为它们缺乏易位域。结果是这些植物来源毒素的胞质传递减弱,抗肿瘤功效降低。因此,为提高其功效,必须采取策略使其从内体囊泡中释放或修饰毒素以使其对降解具有抵抗力。使用红外光谱,我们彻底分析了gelonin的二级结构和热展开。此外,通过将二维相关光谱法和相图法相结合,可以推断出展开过程中的事件顺序,从而确定了RIP成员变性的典型特征,分两步进行,即三级和三级依次损失。在58°C和65°C下分别检测到二级结构。另外,还发现了在gelonin和saporin-S6(另一种I型RIP蛋白)之间的展开过程中存在一些差异。

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