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Production of recombinant human type I collagen homotrimers in CHO cells and their physicochemical and functional properties.

Authors :
Wang, Chuan
Guo, Xiaolei
Fan, Mingtao
Yue, Long
Wang, Hang
Wang, Jiadao
Zha, Zhengqi
Yin, Hongping
Source :
Journal of Biotechnology. Nov2024, Vol. 395, p149-160. 12p.
Publication Year :
2024

Abstract

Collagen is the most abundant protein in human and mammalian structures and is a component of the mammalian extracellular matrix (ECM). Recombinant collagen is a suitable alternative to native collagen extracted from animal tissue for various biomaterials. However, due to the limitations of the expression system, most recombinant collagens are collagen fragments and lack triple helix structures. In this study, Chinese hamster ovary (CHO) cells were used to express the full-length human type I collagen α1 chain (rhCol1α1). Moreover, Endo180 affinity chromatography and pepsin were used to purify pepsin-soluble rhCol1α1 (PSC1). The amino acid composition of PSC1 was closer to that of native human type I collagen, and PSC1 contained 9.1 % hydroxyproline. Analysis of the CD spectra and molecular weight distribution results revealed that PSC1 forms a stable triple helix structure that is resistant to pepsin hydrolysis and has some tolerance to MMP1, MMP2 and MMP8 hydrolysis. Atomic force microscopy (AFM), transmission electron microscopy (TEM), and scanning electron microscopy (SEM) revealed that PSC1 can self-assemble into fibers at a concentration of 1 mg/ml; moreover, PSC1 can promote the proliferation and migration of NIH 3T3 cells. In conclusion, our data suggest that PSC1 is a highly similar type of recombinant collagen that may have applications in biomaterials and other medical fields. • CHO cells were used to express full-length human type I collagen α1 chain (rhCol1α1). • Endo180 affinity chromatography and pepsin were used to purify rhCol1α1. • PSC1 can self-assemble into larger fibers at the suitable concentration and temperature. • PSC1 have stable structure and can promote the proliferation and migration of NIH 3T3 cells. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
01681656
Volume :
395
Database :
Academic Search Index
Journal :
Journal of Biotechnology
Publication Type :
Academic Journal
Accession number :
180531178
Full Text :
https://doi.org/10.1016/j.jbiotec.2024.09.011