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A型和E型肉毒杆菌神经毒素构象的圆二色光谱和荧光光谱研究

Circular dichroic and fluorescence spectroscopic study of the conformation of botulinum neurotoxin types A and E.

作者信息

Datta A, DasGupta B R

机构信息

Food Research Institute, University of Wisconsin, Madison 53706.

出版信息

Mol Cell Biochem. 1988 Feb;79(2):153-9. doi: 10.1007/BF02424558.

Abstract

Botulinum neurotoxin (NT) is synthesized by Clostridium botulinum in any of seven antigenically distinct forms, called types A through G. Protease(s) endogenous to the bacteria, or trypsin, nicks the single chain protein to a dichain molecule which generally is more toxic. The conformation of dichain type A (nicked by endogenous protease), single chain type E, and dichain type E NT (nicked by trypsin) have been determined using circular dichroism (CD) and fluorescence spectroscopy. The high degree of ordered secondary structure (alpha helix 28%, beta sheet 42%, total 70%) found in type A NT at pH 6.0 was similar to that found at pH 9.0 (alpha 22%, beta 47%, total 69%). The secondary structure of the single chain type E NT at pH 6.0 (alpha 18%, beta 37%, total 55%) differed somewhat from these values at pH 9.0 (alpha 22%, beta 43%, total 65%). The dichain type E NT at pH 6.0 assumed a secondary structure (alpha 20%, beta 47%, total 67%) more similar to that of dichain type A than the single chain type E NT. Examination with the fluorogenic probe toluidine napthalene sulfonate revealed that the hydrophobicity of the type A and E NTs were higher at pH 9.0 than at pH 6.0. Also, the hydrophobicity of the dichain type E NT was higher than its precursor the single chain protein and appeared similar to that of the dichain type A NT. The CD and fluorescence studies indicate that conversion of the single chain type E NT to the dichain form (i.e. nicking by trypsin) induced changes in conformation.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

肉毒杆菌神经毒素(NT)由肉毒梭菌以七种抗原性不同的形式之一合成,称为A至G型。细菌内源性蛋白酶或胰蛋白酶将单链蛋白切割成双链分子,该双链分子通常毒性更强。已使用圆二色性(CD)和荧光光谱法确定了双链A型(由内源性蛋白酶切割)、单链E型和双链E型NT(由胰蛋白酶切割)的构象。在pH 6.0时,A型NT中发现的高度有序二级结构(α螺旋28%,β折叠42%,总计70%)与在pH 9.0时发现的相似(α螺旋22%,β折叠47%,总计69%)。单链E型NT在pH 6.0时的二级结构(α螺旋18%,β折叠37%,总计55%)与在pH 9.0时的值(α螺旋22%,β折叠43%,总计65%)略有不同。pH 6.0时的双链E型NT呈现出一种二级结构(α螺旋20%,β折叠47%,总计67%),与双链A型的二级结构比单链E型NT更相似。用荧光探针甲苯萘磺酸盐检测发现,A型和E型NT在pH 9.0时的疏水性高于在pH 6.0时。此外,双链E型NT的疏水性高于其前体单链蛋白,并且与双链A型NT的疏水性相似。CD和荧光研究表明,单链E型NT向双链形式的转化(即由胰蛋白酶切割)诱导了构象变化。(摘要截短于250字)

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