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来自巨型海葵的放线菌孔蛋白RTX-SII的构象稳定性和溶血活性

Conformational stability and hemolytic activity of actinoporin RTX-SII from the sea anemone Radianthus macrodactylus.

作者信息

Vakorina T I, Klyshko E V, Monastyrnaya M M, Kozlovskaya E P

机构信息

Pacific Institute of Bioorganic Chemistry, Far East Branch of the Russian Academy of Sciences, Vladivostok, 690022, Russia.

出版信息

Biochemistry (Mosc). 2005 Jul;70(7):790-8. doi: 10.1007/s10541-005-0185-1.

Abstract

The spatial organization of actinoporin RTX-SII from the sea anemone Radianthus macrodactylus on the level of tertiary and secondary structures was studied by UV and CD spectroscopy and intrinsic protein fluorescence. The specific and molar extinction coefficients of RTX-SII were determined. The percentages of canonical secondary structures of actinoporin were calculated. The tertiary structure of the polypeptide is well developed and its secondary structure is highly ordered and contains about 50% antiparallel folded beta-sheets. The irreversible thermal denaturation of RTX-SII was studied by CD spectroscopy; a conformational transition occurs at 53 degrees C. Above this temperature irreversible conformational changes are observed in the secondary and tertiary structures. This is accompanied by redistribution of the content of regular and distorted forms of beta-sheet and also by increase in the content of an unordered form. It is suggested that an intermediate is formed in the process of thermal denaturation. Acid-base titration of RTX-SII results in irreversible conformational changes at pH below 2.0 and above 12.0. As shown by intrinsic protein fluorescence, tyrosine residues of RTX-SII make a fundamental contribution to emission, and the total fluorescence depends more on temperature and ionic strength of the solution than tryptophan fluorescence. The data on conformational stability of actinoporin are correlated with data on its hemolytic activity. Activity of RTX-SII significantly decreases at increased temperature and slightly decreases at low pH. Hemolytic activity drastically increases at high pH. Increase in the actinoporin activity at pH above 10 seems to be caused by ionization of the molecule.

摘要

通过紫外光谱、圆二色光谱和蛋白质固有荧光,研究了来自大海葵巨指海葵的孔蛋白RTX-SII在三级和二级结构水平上的空间组织。测定了RTX-SII的比消光系数和摩尔消光系数。计算了孔蛋白典型二级结构的百分比。该多肽的三级结构发育良好,其二级结构高度有序,含有约50%的反平行折叠β-折叠片。通过圆二色光谱研究了RTX-SII的不可逆热变性;在53℃发生构象转变。高于此温度,在二级和三级结构中观察到不可逆的构象变化。这伴随着β-折叠片规则和扭曲形式含量的重新分布,以及无序形式含量的增加。有人认为在热变性过程中形成了中间体。RTX-SII的酸碱滴定在pH低于2.0和高于12.0时会导致不可逆的构象变化。蛋白质固有荧光显示,RTX-SII的酪氨酸残基对发射有重要贡献,总荧光比色氨酸荧光更依赖于溶液的温度和离子强度。孔蛋白构象稳定性的数据与其溶血活性的数据相关。RTX-SII的活性在温度升高时显著降低,在低pH时略有降低。在高pH时溶血活性急剧增加。在pH高于10时孔蛋白活性的增加似乎是由分子的电离引起的。

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