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化脓性链球菌胶原样结构构建体自组装成更高阶结构。

Self-association of streptococcus pyogenes collagen-like constructs into higher order structures.

作者信息

Yoshizumi Ayumi, Yu Zhuoxin, Silva Teresita, Thiagarajan Geetha, Ramshaw John A M, Inouye Masayori, Brodsky Barbara

机构信息

Department of Biochemistry, University of Medicine and Dentistry of New Jersey-Robert Wood Johnson Medical School, 675 Hoes Lane, Piscataway, NJ 08854, USA.

出版信息

Protein Sci. 2009 Jun;18(6):1241-51. doi: 10.1002/pro.134.

Abstract

A number of bacterial collagen-like proteins with Gly as every third residue and a high Pro content have been observed to form stable triple-helical structures despite the absence of hydroxyproline (Hyp). Here, the high yield cold-shock expression system is used to obtain purified recombinant collagen-like protein (V-CL) from Streptococcus pyogenes containing an N-terminal globular domain V followed by the collagen triple-helix domain CL and the modified construct with two tandem collagen domains V-CL-CL. Both constructs and their isolated collagenous domains form stable triple-helices characterized by very sharp thermal transitions at 35-37 degrees C and by high values of calorimetric enthalpy. Procedures for the formation of collagen SLS crystallites lead to parallel arrays of in register V-CL-CL molecules, as well as centrosymmetric arrays of dimers joined at their globular domains. At neutral pH and high concentrations, the bacterial constructs all show a tendency towards aggregation. The isolated collagen domains, CL and CL-CL, form units of diameter 4-5 nm which bundle together and twist to make larger fibrillar structures. Thus, although this S. pyogenes collagen-like protein is a cell surface protein with no indication of participation in higher order structure, the triple-helix domain has the potential of forming fibrillar structures even in the absence of hydroxyproline. The formation of fibrils suggests bacterial collagen proteins may be useful for biomaterials and tissue engineering applications.

摘要

已观察到许多细菌胶原蛋白样蛋白,其每隔三个残基就有一个甘氨酸且脯氨酸含量高,尽管没有羟脯氨酸(Hyp),但仍能形成稳定的三螺旋结构。在此,利用高产冷休克表达系统从化脓性链球菌中获得纯化的重组胶原蛋白样蛋白(V-CL),其包含一个N端球状结构域V,随后是胶原蛋白三螺旋结构域CL,以及带有两个串联胶原蛋白结构域的修饰构建体V-CL-CL。这两种构建体及其分离的胶原结构域均形成稳定的三螺旋,其特征是在35-37摄氏度时有非常尖锐的热转变以及有高的量热焓值。形成胶原蛋白SLS微晶的程序导致V-CL-CL分子以平行排列的方式对齐,以及在其球状结构域处连接的二聚体的中心对称排列。在中性pH和高浓度下,细菌构建体都显示出聚集的倾向。分离的胶原结构域CL和CL-CL形成直径为4-5纳米的单元,这些单元聚集在一起并扭曲形成更大的纤维状结构。因此,尽管这种化脓性链球菌胶原蛋白样蛋白是一种细胞表面蛋白,没有参与更高层次结构的迹象,但即使没有羟脯氨酸,三螺旋结构域也有形成纤维状结构的潜力。纤维的形成表明细菌胶原蛋白蛋白可能对生物材料和组织工程应用有用。

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