Hannibal Luciana, Axhemi Armend, Glushchenko Alla V, Moreira Edward S, Brasch Nicola E, Jacobsen Donald W
Department of Cell Biology, Lerner Research Institute, Cleveland Clinic, Cleveland, OH 44195, USA.
Clin Chem Lab Med. 2008;46(12):1739-46. doi: 10.1515/CCLM.2008.356.
Accurate assessment of cobalamin profiles in human serum, cells, and tissues may have clinical diagnostic value. However, non-alkyl forms of cobalamin undergo beta-axial ligand exchange reactions during extraction, which leads to inaccurate profiles having little or no diagnostic value.
Experiments were designed to: 1) assess beta-axial ligand exchange chemistry during the extraction and isolation of cobalamins from cultured bovine aortic endothelial cells, human foreskin fibroblasts, and human hepatoma HepG2 cells, and 2) to establish extraction conditions that would provide a more accurate assessment of endogenous forms containing both exchangeable and non-exchangeable beta-axial ligands.
The cobalamin profile of cells grown in the presence of [ 57Co]-cyanocobalamin as a source of vitamin B12 shows that the following derivatives are present: [ 57Co]-aquacobalamin, [ 57Co]-glutathionylcobalamin, [ 57Co]-sulfitocobalamin, [ 57Co]-cyanocobalamin, [ 57Co]-adenosylcobalamin, [ 57Co]-methylcobalamin, as well as other yet unidentified corrinoids. When the extraction is performed in the presence of excess cold aquacobalaminacting as a scavenger cobalamin (i.e. "cold trapping"), the recovery of both [ 57Co]-glutathionylcobalamin and [ 57Co]-sulfitocobalamin decreases to low but consistent levels. In contrasts, the [ 57Co]-nitrocobalamin observed in the extracts prepared without excess aquacobalamin is undetected in extracts prepared with cold trapping.
This demonstrates that beta-ligand exchange occur with non-covalently bound beta-ligands. The exception to this observation is cyanocobalamin with a non-exchangeable CN- group. It is now possible to obtain accurate profiles of cellular cobalamin.
准确评估人体血清、细胞和组织中的钴胺素谱可能具有临床诊断价值。然而,非烷基形式的钴胺素在提取过程中会发生β-轴向配体交换反应,这会导致谱图不准确,几乎没有诊断价值。
设计实验以:1)评估从培养的牛主动脉内皮细胞、人包皮成纤维细胞和人肝癌HepG2细胞中提取和分离钴胺素过程中的β-轴向配体交换化学,以及2)建立能够更准确评估同时含有可交换和不可交换β-轴向配体的内源性形式的提取条件。
以[57Co]-氰钴胺作为维生素B12来源培养的细胞的钴胺素谱显示存在以下衍生物:[57Co]-水钴胺素、[57Co]-谷胱甘肽钴胺素、[57Co]-亚硫酸钴胺素、[57Co]-氰钴胺素、[57Co]-腺苷钴胺素、[57Co]-甲基钴胺素,以及其他尚未鉴定的类咕啉。当在过量冷的水钴胺素作为清除剂钴胺素(即“冷阱捕集”)存在的情况下进行提取时,[57Co]-谷胱甘肽钴胺素和[57Co]-亚硫酸钴胺素的回收率均降至低但稳定的水平。相比之下,在没有过量水钴胺素制备的提取物中观察到的[57Co]-硝钴胺素在冷阱捕集制备的提取物中未检测到。
这表明β-配体交换发生在非共价结合的β-配体上。此观察结果的例外是具有不可交换CN-基团的氰钴胺。现在有可能获得细胞钴胺素的准确谱图。