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RNase A Domain-Swapped Dimers Produced Through Different Methods: Structure–Catalytic Properties and Antitumor Activity

机译:通过不同方法生产的畴倍二聚体:结构 - 催化性质和抗肿瘤活性

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摘要

Upon oligomerization, RNase A can acquire important properties, such as cytotoxicity against leukemic cells. When lyophilized from 40% acetic acid solutions, the enzyme self-associates through the so-called three-dimensional domain swapping (3D-DS) mechanism involving both N- and/or C-terminals. The same species are formed if the enzyme is subjected to thermal incubation in various solvents, especially in 40% ethanol. We evaluated here if significant structural modifications might occur in RNase A N- or C-swapped dimers and/or in the residual monomer(s), as a function of the oligomerization protocol applied. We detected that the monomer activity vs. ss-RNA was partly affected by both protocols, although the protein does not suffer spectroscopic alterations. Instead, the two N-swapped dimers showed differences in the fluorescence emission spectra but almost identical enzymatic activities, while the C-swapped dimers displayed slightly different activities vs. both ss- or ds-RNA substrates together with not negligible fluorescence emission alterations within each other. Besides these results, we also discuss the reasons justifying the different relative enzymatic activities displayed by the N-dimers and C-dimers. Last, similarly with data previously registered in a mouse model, we found that both dimeric species significantly decrease human melanoma A375 cell viability, while only N-dimers reduce human melanoma MeWo cell growth.
机译:在寡聚化后,RNase A可以获得重要的性质,例如对白血病细胞的细胞毒性。当冻干40%乙酸溶液时,酶通过所谓的三维域交换(3D-DS)机制涉及N-和/或C末端。如果酶在各种溶剂中进行热培养,特别是在40%乙醇中,则形成相同的物种。如果在RNase A或C型转二聚体和/或残留单体中可能发生显着的结构修饰,则在此评估在这里评估,作为施用的寡聚化方案的官能化方案。我们检测到单体活性与SS-RNA部分受到两种方案的部分影响,尽管蛋白质不会遭受光谱改变。相反,两个n次次的二聚体显示出荧光发射光谱但几乎相同的酶活性的差异,而C次交换二聚体在每个SS或DS-RNA基材上显示出略微不同的活性,并且每个荧光发射改变其他。除了这些结果外,还讨论了正式证明了N二聚体和C二聚体显示的不同相对酶活性的原因。最后,与先前在小鼠模型中注册的数据类似,我们发现两种二聚体物种显着降低人黑色素瘤A375细胞活力,而N二聚体降低了人黑色素瘤Mewo细胞生长。

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