van Veen Harrie A, Geerts Marlieke E J, van Berkel Patrick H C, Nuijens Jan H
Pharming, Archimedesweg, Leiden, The Netherlands.
Eur J Biochem. 2004 Feb;271(4):678-84. doi: 10.1111/j.1432-1033.2003.03965.x.
Lactoferrin (LF) is an iron-binding glycoprotein of the innate host defence system. To elucidate the role of N-linked glycosylation in protection of LF against proteolysis, we compared the tryptic susceptibility of human LF (hLF) variants from human milk, expressed in human 293(S) cells or in the milk of transgenic mice and cows. The analysis revealed that recombinant hLF (rhLF) with mutations Ile130-->Thr and Gly404-->Cys was about twofold more susceptible than glycosylated and unglycosylated variants with the naturally occurring Ile130 and Gly404. Hence, N-linked glycosylation is not involved in protection of hLF against tryptic proteolysis. Apparently, the previously reported protection by N-linked glycosylation of hLF [van Berkel, P.H.C., Geerts, M.E.J., van Veen, H.A., Kooiman, P.M., Pieper, F., de Boer, H.A. & Nuijens, J.H. (1995) Biochem. J. 312, 107-114] is restricted to rhLF containing the Thr130 and Cys404. Comparison of the tryptic proteolysis of hLF and bovine LF (bLF) revealed that hLF is about 100-fold more resistant than bLF. Glycosylation variants A and B of bLF differed by about 10-fold in susceptibility to trypsin. This difference is due to glycosylation at Asn281 in bLF-A. Hence, glycosylation at Asn281 protects bLF against cleavage by trypsin at Lys282.
乳铁蛋白(LF)是天然宿主防御系统中的一种铁结合糖蛋白。为了阐明N-连接糖基化在保护LF免受蛋白水解方面的作用,我们比较了在人293(S)细胞中表达的、来自人乳的人LF(hLF)变体,以及转基因小鼠和奶牛乳汁中的hLF变体对胰蛋白酶的敏感性。分析表明,与具有天然存在的Ile130和Gly404的糖基化和非糖基化变体相比,Ile130突变为Thr且Gly404突变为Cys的重组hLF(rhLF)对胰蛋白酶的敏感性大约高两倍。因此,N-连接糖基化不参与保护hLF免受胰蛋白酶的蛋白水解。显然,先前报道的hLF的N-连接糖基化保护作用[van Berkel, P.H.C., Geerts, M.E.J., van Veen, H.A., Kooiman, P.M., Pieper, F., de Boer, H.A. & Nuijens, J.H. (1995) Biochem. J. 312, 107 - 114]仅限于含有Thr130和Cys404的rhLF。hLF和牛乳铁蛋白(bLF)的胰蛋白酶水解比较表明,hLF的抗性比bLF高约100倍。bLF的糖基化变体A和B对胰蛋白酶的敏感性相差约10倍。这种差异是由于bLF - A中Asn281的糖基化。因此,Asn281的糖基化保护bLF免受胰蛋白酶在Lys282处的切割。