重组DNA
细胞外基质
基质金属蛋白酶
细胞生物学
酵母
三螺旋
化学
生物活性
生物化学
羟基化
计算生物学
组织工程
生物
体外
酶
遗传学
基因
立体化学
作者
Barbara Brodsky,John A. M. Ramshaw
出处
期刊:Sub-cellular biochemistry
日期:2017-01-01
卷期号:: 601-629
被引量:24
标识
DOI:10.1007/978-3-319-49674-0_18
摘要
There is a great deal of interest in obtaining recombinant collagen as an alternative source of material for biomedical applications and as an approach for obtaining basic structural and biological information. However, application of recombinant technology to collagen presents challenges, most notably the need for post-translational hydroxylation of prolines for triple-helix stability. Full length recombinant human collagens have been successfully expressed in cell lines, yeast, and several plant systems, while collagen fragments have been expressed in E. coli. In addition, bacterial collagen-like proteins can be expressed in high yields in E. coli and easily manipulated to incorporate biologically active sequences from human collagens. These expression systems allow manipulation of biologically active sequences within collagen, which has furthered our understanding of the relationships between collagen sequences, structure and function. Here, recombinant studies on collagen interactions with cell receptors, extracellular matrix proteins, and matrix metalloproteinases are reviewed, and discussed in terms of their potential biomaterial and biomedical applications.
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