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Structure and Function of C-Terminal Domain of Aciniform Spidroin

机译:乳状螺旋体C末端结构域的结构和功能

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C-terminal domains (CTDs) of various spi- droins are relatively conserved in the amino acid sequence and have been suggested to perform similar functions. Here, we solved the structure of the CTD of an aciniform spidroin using NMR spectroscopy with a two-point mutant and studied its functional role with several constructs. The CTDs of aciniform, major, and minor ampullate spidroins adopt the same domain-swapping dimeric folding although their sequence identities are 24—40%. Unlike CTDs of major and minor ampullate spidroins, the aciniform CTD had no obvious effects on preventing spidroins from aggregation in storage but slightly enhanced protein assembly under shear force. The differential functions may result from significant differences in detailed structures and properties of repetitive regions of various types of spidroins. Nevertheless, all CTDs may have a common functional role: dimerization of the CTD doubles the size of silk proteins, reduces the number of chain ends, and thus leads to fewer chain end defects in the fibers formed.
机译:各种螺旋蛋白的C末端结构域(CTD)在氨基酸序列中相对保守,并被认为具有相似的功能。在这里,我们使用带有两点突变体的NMR光谱分析解决了痤疮状蛛网膜蛋白CTD的结构,并研究了其在几种结构中的功能。螺旋形,大和小壶腹螺旋体的CTD都采用相同的域交换二聚体折叠,尽管它们的序列同一性为24-40%。不同于主要和次要壶腹类螺旋体的CTD,该棒状CTD在防止其在储存中聚集没有明显的作用,但是在剪切力作用下蛋白质组装略有增强。差异功能可能是由于各种类型的蛛丝蛋白的重复区域的详细结构和性质上的显着差异所致。尽管如此,所有CTD可能具有共同的功能作用:CTD的二聚化使真丝蛋白的尺寸增加了一倍,减少了链端的数量,因此导致形成的纤维中链端的缺陷更少。

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