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羊毛甾醇生物合成过程中甲基重排的立体化学

Stereochemistry of a methyl-group rearrangement during the biosynthesis of lanosterol.

作者信息

Phillips G T, Clifford K H

出版信息

Eur J Biochem. 1976 Jan 2;61(1):271-86. doi: 10.1111/j.1432-1033.1976.tb10020.x.

Abstract
  1. (3RS,6R)-[6-2H1,6-3H1,6-14C], (3RS,6S)-[6-2H1,6-3H1,6-14C] and (3RS)-[6-3H1,6-14C]mevalonolactones were synthesised from R-[2H1,3H1,2-14C], S-[2H1,3H1,2-14C] and [3h1,2-14C]acetic acids respectively. 2. Each mevalonate was converted into cholesterol by a rat liver preparation. 3. Each cholesterol specimen was converted into androsta-1,4-diene-3,17-dione by incubation with Mycobacterium phlei in the presence of 2,2'.dipyridyl. Each specimen of androsta-1,4-diene-3,17-dione was converted into androsta-1,4-dien-3-one-17-ethylene ketail. 4. The samples of androsta-1,4-dien-3-one-17-ethylene ketal were each converted chemically into oestrones in which the methyl group at C-18 is the only carbon atom that originated from C-6 in mevalonolactone. 5. The oestrone from (3RS)-[6-3H1,6-14C]mevalonolactone was oxidised chemically to acetic acid which was converted into p-bromophenacyl acetate and the 3H/14C ratio was measured. 6. There was no overall loss of tritium from the methyl group of acetic acid, as measured by determining the 3H/14C ratios of the p-bromophenacyl esters, when the synthetic and degradative procedures 1 -- 5 were tested with [3H1,2-14C]acetic acid. 7. The oestrones derived from the 6R and 6S-mevalonolactones were oxidised. The chiralities of the resulting acetates were determined by an established procedure whereby the acetates were converted into 2S-malates which were examined for loss of tritium on equilibration with fumarate hydratase. 8. The oestrone from (3RS,6R)-[6-2H1,6-3H1,6-14C]mevalonate gave acetic acid which was converted into 2S-malate that retained 68.6% of its tritium after treatment with fumarate hydratase; the configuration of this acetic acid was R. 9. The oestrone from (3RS,6S)-E16-2H1,6-3H1,6-14C]mevalonate was oxidised to acetic acid which was converted into 2S-malate that retained 31.9% of its tritium after treatment with fumarate hydratase; the configuration of this acetic acid was S. 10. There was no overall change in the configuration of a chiral methyl group between C-6 of mevalonate and C-18 of oestrone. It is cncluded that the intramolecular migration of a chiral methyl group from C-15 in 2,3-oxidosqualene to C-13 in lanosterol is stereospecific and occurs with overall retention of configuration.
摘要
  1. 分别由R-[2H1,3H1,2-14C]、S-[2H1,3H1,2-14C]和[3H1,2-14C]乙酸合成了(3RS,6R)-[6-2H1,6-3H1,6-14C]、(3RS,6S)-[6-2H1,6-3H1,6-14C]和(3RS)-[6-3H1,6-14C]甲羟戊酸内酯。2. 每种甲羟戊酸都通过大鼠肝脏制剂转化为胆固醇。3. 每种胆固醇标本在2,2'-联吡啶存在下与草分枝杆菌孵育,转化为雄甾-1,4-二烯-3,17-二酮。每种雄甾-1,4-二烯-3,17-二酮标本都转化为雄甾-1,4-二烯-3-酮-17-乙烯缩酮。4. 雄甾-1,4-二烯-3-酮-17-乙烯缩酮样品分别通过化学方法转化为雌酮,其中C-18位的甲基是唯一源自甲羟戊酸内酯中C-6的碳原子。5. (3RS)-[6-3H1,6-14C]甲羟戊酸内酯生成的雌酮经化学氧化为乙酸,乙酸再转化为对溴苯甲酰乙酸酯,并测定3H/14C比值。6. 用[3H1,2-14C]乙酸对合成和降解步骤1 - 5进行测试时,通过测定对溴苯甲酰酯的3H/14C比值发现,乙酸甲基中的氚没有总体损失。7. 源自6R和6S-甲羟戊酸内酯的雌酮被氧化。通过既定程序确定所得乙酸酯的手性,该程序是将乙酸酯转化为2S-苹果酸,然后检查其与延胡索酸水合酶平衡时氚的损失情况。8. (3RS,6R)-[6-2H1,6-3H1,6-14C]甲羟戊酸生成的雌酮产生乙酸,乙酸转化为2S-苹果酸,经延胡索酸水合酶处理后保留了68.6%的氚;该乙酸的构型为R。9. (3RS,6S)-[6-2H1,6-3H1,6-14C]甲羟戊酸生成的雌酮被氧化为乙酸,乙酸转化为2S-苹果酸,经延胡索酸水合酶处理后保留了31.9%的氚;该乙酸的构型为S。10. 甲羟戊酸C-6位的手性甲基与雌酮C-18位之间的构型没有总体变化。得出结论,手性甲基从2,3-氧化角鲨烯中的C-15向羊毛甾醇中的C-13的分子内迁移是立体特异性的,并且构型总体保留。

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