Kondo H, Kolhouse J F, Allen R H
Proc Natl Acad Sci U S A. 1980 Feb;77(2):817-21. doi: 10.1073/pnas.77.2.817.
Cobalamin (Cbl, vitamin B-12) has been extracted and isolated from a number of animal tissues by using (i) reverse-affinity chromatography on R protein-Sepharose followed by adsorption to and elution from charcoal-coated agarose and (ii) paper chromatography. Radioisotope dilution assays showed that only 75-97% of the Cbl chromatographed in the position of crystalline Cbl. The remaining 3-25% was present in a number of slower and faster moving fractions. This suggested that Cbl analogues are present in animal tissues because appropriate controls ruled out the possibility that this material was artifactually derived from Cbl during the extraction and purification procedures. With a large-scale isolation from rabbit kidney, the material in five such fractions contained cobalt and had absorption spectra that were similar to but different from the spectrum of Cbl, indicating that they were Cbl analogues. Compared to Cbl, these Cbl analogues had decreased but definite affinities for Cbl-binding proteins with the following order of strength of binding: R protein > transcobalamin II > intrinsic factor. Compared to Cbl, they also had decreased but definite growth-promoting activity for two microorganisms, Euglena gracilis and Lactobacillus leichmannii, which require Cbl for growth. These Cbl analogues differed from each other and from 18 synthetic Cbl analogues, including the most common Cbl analogues synthesized by microorganisms, in at least one of the above features. These studies indicate that animal tissues contain a number of Cbl analogues whose origins, structures, and biologic activities remain to be determined.
已通过以下方法从多种动物组织中提取和分离钴胺素(Cbl,维生素B - 12):(i)在R蛋白 - 琼脂糖凝胶上进行反向亲和色谱,随后吸附到涂有活性炭的琼脂糖上并洗脱,以及(ii)纸色谱法。放射性同位素稀释分析表明,色谱分离出的Cbl中只有75 - 97%处于结晶Cbl的位置。其余3 - 25%存在于一些迁移速度较慢和较快的组分中。这表明动物组织中存在Cbl类似物,因为适当的对照排除了这种物质在提取和纯化过程中人为地从Cbl衍生而来的可能性。通过从兔肾大规模分离,五个这样的组分中的物质含有钴,并且具有与Cbl光谱相似但不同的吸收光谱,表明它们是Cbl类似物。与Cbl相比,这些Cbl类似物对Cbl结合蛋白的亲和力降低但确定,结合强度顺序如下:R蛋白>转钴胺素II>内因子。与Cbl相比,它们对两种需要Cbl生长的微生物——纤细裸藻和赖氏乳杆菌的促生长活性也降低但确定。这些Cbl类似物彼此不同,并且与18种合成Cbl类似物不同,包括微生物合成的最常见的Cbl类似物,至少在上述特征之一上有所不同。这些研究表明,动物组织中含有多种Cbl类似物,其来源、结构和生物活性仍有待确定。