Nokelainen M, Helaakoski T, Myllyharju J, Notbohm H, Pihlajaniemi T, Fietzek P P, Kivirikko K I
Collagen Research Unit, University of Oulu, Finland.
Matrix Biol. 1998 Jan;16(6):329-38. doi: 10.1016/s0945-053x(98)90004-x.
Insect cells coinfected with two baculoviruses, one coding for the pro alpha chains of human type II procollagen and the other for both the alpha and beta subunits of human prolyl 4-hydroxylase, produced the cartilage-specific type II collagen with a stable triple helix. The highest expression levels, up to 50 mg/l of type II collagen, were obtained in suspension culture using a modified construct in which sequences coding for the signal peptide and N propeptide of type II procollagen had been replaced by those for type III procollagen. The type III N propeptide artificially generated into type II procollagen was found to be cleaved at a much higher rate than the wild-type type II N propeptide, probably because the former interacted poorly with the triple-helical domain of type II procollagen. The amino acid composition of the recombinant type II collagen was very similar to that of the non-recombinant protein, but the hydroxylysine content was only 17% and that of glycosylated hydroxylysines was equally low. The hydroxylysine content was increased to the level found in the non-recombinant collagen by using an additional baculovirus coding for lysyl hydroxylase, and a substantial increase was also found in the glycosylated hydroxylysine content. No difference in thermal stability was found between the low- and high-hydroxylysine collagens.
用两种杆状病毒共感染昆虫细胞,一种编码人II型前胶原的α链前体,另一种编码人脯氨酰4-羟化酶的α和β亚基,产生了具有稳定三螺旋结构的软骨特异性II型胶原。使用一种改良构建体在悬浮培养中获得了最高表达水平,高达50mg/L的II型胶原,其中II型前胶原信号肽和N端前肽的编码序列被III型前胶原的序列所取代。发现人工引入II型前胶原中的III型N端前肽的切割速率比野生型II型N端前肽高得多,这可能是因为前者与II型前胶原的三螺旋结构域相互作用较差。重组II型胶原的氨基酸组成与非重组蛋白非常相似,但羟赖氨酸含量仅为17%,糖基化羟赖氨酸含量同样很低。通过使用另一种编码赖氨酰羟化酶的杆状病毒,羟赖氨酸含量增加到非重组胶原中的水平,糖基化羟赖氨酸含量也大幅增加。低羟赖氨酸胶原和高羟赖氨酸胶原之间未发现热稳定性差异。