Cooke N E
J Biol Chem. 1986 Mar 5;261(7):3441-50.
Vitamin D binding protein (DBP) is an abundant serum glycoprotein secreted by the liver which transports vitamin D sterols, binds to actin, and is found on the surface of B-lymphocytes and subpopulations of T-lymphocytes. In the current study, a cDNA to rat DBP mRNA was cloned from a bacteriophage lambda gt 11 rat liver expression library. This DBP cDNA clone was identified by immunoblotting and its identity was confirmed by immunoprecipitation of a 54-kDa protein after hybrid-assisted translation. Northern analysis and primer extension mapping of rat liver mRNA indicated that the full-length DBP mRNA contains 1700 bases. By DNA sequence analysis this 1655-base pair clone contains a single open reading frame encoding the 476-amino acid containing full-length DBP and includes its 16-amino acid signal sequence. Analysis of the sequence reveals about 40% nucleotide and 23% amino acid homology to both albumin and alpha-fetoprotein. The encoded DBP contains a characteristic placement of cysteine residues, identical to that in albumin, suggesting a similar secondary folding structure. Albumin and alpha-fetoprotein are composed of three internally homologous domains. DBP mRNA terminates 122 amino acids before the larger albumin mRNA in the third internal domain, but retains the characteristic homology among the first two domains and the truncated portion of the third domain. These data support the conclusion that DBP is a member of a multigene family which includes albumin and alpha-fetoprotein.
维生素D结合蛋白(DBP)是一种由肝脏分泌的丰富血清糖蛋白,它运输维生素D甾醇,与肌动蛋白结合,并存在于B淋巴细胞和T淋巴细胞亚群的表面。在本研究中,从噬菌体λgt 11大鼠肝脏表达文库中克隆了大鼠DBP mRNA的cDNA。通过免疫印迹鉴定该DBP cDNA克隆,并在杂交辅助翻译后通过对一种54 kDa蛋白的免疫沉淀证实其身份。对大鼠肝脏mRNA的Northern分析和引物延伸图谱表明,全长DBP mRNA包含1700个碱基。通过DNA序列分析,这个1655碱基对的克隆包含一个单一的开放阅读框,编码含476个氨基酸的全长DBP,并包括其16个氨基酸的信号序列。序列分析显示,与白蛋白和甲胎蛋白的核苷酸同源性约为40%,氨基酸同源性约为23%。编码的DBP含有与白蛋白中相同的半胱氨酸残基特征性排列,表明其二级折叠结构相似。白蛋白和甲胎蛋白由三个内部同源结构域组成。DBP mRNA在第三个内部结构域中比更大的白蛋白mRNA提前122个氨基酸终止,但在前两个结构域和第三个结构域的截短部分之间保留了特征性同源性。这些数据支持DBP是一个包括白蛋白和甲胎蛋白的多基因家族成员的结论。