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The B12Vitamins and Methionine in the Metabolism of Prymnesium parvum

机译:B12VITAMINS和蛋氨酸在Prymnesium parvum的代谢中

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SUMMARY Methionine or ethionine, although capable of serving as sole nitrogen source for Prymnesium parvum, cannot replace or spare the vitamin B12 nutrient requirement for the growth of this flagellate. In the presence of vitamin B12 methionine counteracted the inhibition of growth exerted by some vitamin B12 analogues which are substituted at the benzimidazole part of the molecule. No such effect was observed against the inhibition by certain other analogues. Analogue FIII (α-(5-hydroxybenzimidazolyl)-cobamide cyanide) replaced vitamin B12 in the presence of methionine, and to a lesser degree also in the presence of other methyl donors such as methylmethionine sulphonium iodide, dimethylpropiothetin, choline chloride and betaine. The conclusion drawn is that for P. parvum analogue FIII is capable of replacing vitamin B12 in all the metabolic pathways other than methyl-group synthesis. For the latter process, the benzimidazole methyl groups present in vitamin B12 and analogue FIIIm (α-(5-methoxy-benzimidazolyl)-cobamide cyanide) are indispensable.
机译:发明内容甲硫氨酸或乙牛,尽管能够用作胰岛粉氨汁的纯氮源,但不能替代或备用维生素B12营养需求,以获得这种鞭毛的生长。在维生素B12甲硫氨酸存在下,抵消了由一些维生素B12类似物施加的生长的抑制,其在分子的苯并咪唑部分取代。没有通过某些其他类似物抑制这种效果。类似物FIII(α-(5-羟基苯氨基甲酰基) - 辛酰胺氰化物)在甲硫氨酸存在下替代维生素B12,并且在其他甲基供体如甲基甲基硫氨氨酸碘化甲酸乙酯,二甲基己酰氯,胆碱和甜菜碱存在下,也较小程度。结论是,对于P.Parvum类似物FIII能够在除甲基群合成之外的所有代谢途径中替代维生素B12。对于后一种方法,维生素B12和类似物(α-(5-甲氧基 - 苯并咪唑基)-cobamide cyanide)中存在的苯并咪唑甲基是必不可少的。

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