Grover J, Roughley P J
Genetics Unit, Shriners Hospital for Crippled Children, Montreal, Canada.
Biochem J. 1994 Jun 1;300 ( Pt 2)(Pt 2):317-24. doi: 10.1042/bj3000317.
Functional recombinant human link protein has been produced using a baculovirus expression system. In addition to the intact link protein, three mutant forms have also been expressed. Each mutant bears a deletion equivalent to the protein encoded by one exon in the gene. These deletions represent the A domain, which is thought to be responsible for interaction with aggrecan, and the B or B' domains, which are associated with the interaction with hyaluronate. Such deletions split codons spanning exon boundaries, but maintain the reading frame of the protein and result in the correct amino acid being present at the splice junction. All the recombinant proteins appear as two components upon SDS/PAGe, though the abundance of the two forms does vary between preparations, as a result of variable substitution by N-linked oligosaccharides. The recombinant intact link protein was able to interact with both hyaluronate and aggrecan, showing that the baculovirus system is able to produce functional molecules. All of the recombinant mutant link proteins were also able to interact with hyaluronate, indicating that both the B and B' domains can function independently. The recombinant mutant link proteins were also able to interact with aggrecan, with the exception of the mutant lacking the A domain, confirming that this ability resides entirely within this domain.
已使用杆状病毒表达系统生产出功能性重组人连接蛋白。除完整的连接蛋白外,还表达了三种突变形式。每个突变体都有一个相当于基因中一个外显子编码的蛋白质的缺失。这些缺失代表A结构域,据认为该结构域负责与聚集蛋白聚糖相互作用;以及B或B'结构域,它们与透明质酸的相互作用有关。这种缺失将跨越外显子边界的密码子分开,但保持了蛋白质的阅读框,并导致在剪接连接处出现正确的氨基酸。在SDS/PAGE上,所有重组蛋白均呈现为两个组分,不过由于N-连接寡糖的可变取代,两种形式的丰度在不同制剂之间有所不同。重组完整连接蛋白能够与透明质酸和聚集蛋白聚糖相互作用,表明杆状病毒系统能够产生功能性分子。所有重组突变连接蛋白也都能够与透明质酸相互作用,表明B和B'结构域都能独立发挥功能。除了缺少A结构域的突变体之外,重组突变连接蛋白也能够与聚集蛋白聚糖相互作用,这证实了这种能力完全存在于该结构域内。