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23S,25-二羟基维生素D3作为维生素D3的一种循环代谢物。其在25-羟基维生素D3-26,23-内酯生物合成中的作用。

23S,25-dihydroxyvitamin D3 as a circulating metabolite of vitamin D3. Its role in 25-hydroxyvitamin D3-26,23-lactone biosynthesis.

作者信息

Napoli J L, Pramanik B C, Partridge J J, Uskoković M R, Horst R L

出版信息

J Biol Chem. 1982 Aug 25;257(16):9634-9.

PMID:6286629
Abstract

23,25-Dihydroxyvitamin D3 was isolated from vitamin D-toxic pig plasma by sequential chromatography through two gravity columns and three high performance liquid chromatography systems. Two of the high performance liquid chromatography systems separated the R and S diastereomers of 23,25-dihydroxyvitamin D3 and demonstrated that the metabolite has the 23S configuration. Ultraviolet absorbance and mass spectroscopy of the pure metabolite and mass spectroscopy of its trisilylated derivative confirmed the structural assignment. 23S,25-Dihydroxyvitamin D3, 23R,25-dihydroxyvitamin D3, 25S,26-dihydroxyvitamin D3, and 25R,26-dihydroxyvitamin D3 were assessed for their ability to produce 25-hydroxyvitamin D3-26,23-lactone in vitamin D2-toxic rats. On 23S,25-dihydroxyvitamin D3, of the naturally occurring compounds, was able to increase the plasma lactone concentration. This metabolite was a more efficient precursor than 25-hydroxyvitamin D3, suggesting that 23S-hydroxylation is a rate-limiting step in 25-hydroxyvitamin D3-26,23-lactone formation. 23S,25-Dihydroxyvitamin D3 was not detected in 25-hydroxyvitamin D3-dosed rats, indicating that the former is rapidly metabolized. Nephrectomized rats had a diminished but significant ability to synthesize 25-hydroxyvitamin D3-26,23-lactone from 25-hydroxyvitamin D3. Nephrectomy did not affect synthesis of 25-hydroxyvitamin D3-26,23-lactone from 23S,25-dihydroxyvitamin D3. These results demonstrate that vitamin D3 23S-hydroxylase(s) are also located extrarenally and that extrarenal tissues are quantitatively important to 25-hydroxyvitamin D3-26,23-lactone synthesis.

摘要

通过两根重力柱和三个高效液相色谱系统的连续色谱法,从维生素D中毒猪的血浆中分离出23,25 - 二羟基维生素D3。其中两个高效液相色谱系统分离出了23,25 - 二羟基维生素D3的R和S非对映异构体,并证明该代谢物具有23S构型。纯代谢物的紫外吸收和质谱以及其三硅烷基化衍生物的质谱证实了结构归属。评估了23S,25 - 二羟基维生素D3、23R,25 - 二羟基维生素D3、25S,26 - 二羟基维生素D3和25R,26 - 二羟基维生素D3在维生素D2中毒大鼠中产生25 - 羟基维生素D3 - 26,23 - 内酯的能力。在天然存在的化合物中,只有23S,25 - 二羟基维生素D3能够增加血浆内酯浓度。这种代谢物是比25 - 羟基维生素D3更有效的前体,表明23S - 羟基化是25 - 羟基维生素D3 - 26,23 - 内酯形成的限速步骤。在给予25 - 羟基维生素D3的大鼠中未检测到23S,25 - 二羟基维生素D3,表明前者迅速代谢。肾切除大鼠从25 - 羟基维生素D3合成25 - 羟基维生素D3 - 26,23 - 内酯的能力减弱但仍显著。肾切除术不影响从23S,25 - 二羟基维生素D3合成25 - 羟基维生素D3 - 26,23 - 内酯。这些结果表明,维生素D3 23S - 羟化酶也存在于肾外,并且肾外组织对25 - 羟基维生素D3 - 26,23 - 内酯的合成在数量上具有重要意义。

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