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担子菌烟管菌对氯芳基丙烷二醇的立体选择性生物合成:探究氨基酸、丙酮酸、甘油和苯基乙酰甲醇的作用

Stereoselective biosynthesis of chloroarylpropane diols by the basidiomycete Bjerkandera adusta: exploring the roles of amino acids, pyruvate, glycerol and phenyl acetyl carbinol.

作者信息

Silk Peter James, Macaulay John B

机构信息

Natural Resources Canada, Canadian Forest Service, Atlantic Forestry Centre, P.O. Box 4000, 1350 Regent Street, Fredericton, NB, Canada E3B 5P7.

出版信息

FEMS Microbiol Lett. 2003 Nov 7;228(1):11-9. doi: 10.1016/S0378-1097(03)00725-0.

Abstract

Bjerkandera adusta produces many chlorometabolites including chlorinated anisyl metabolites (CAMs) and 1-arylpropane-1,2-diols (1, 2, 3, 4) as idiophasic metabolic products of L-phenylalanine. These diols are stereoselectively biosynthesized from a C7-unit (benzylic, from L-phenylalanine) and a C2-unit, of unknown origin, as predominantly erythro (1R,2S) enantiomers. Of the labeled amino acids tested as possible C2-units, at the 4-10 mM level, none were found to efficiently label the 2,3-propane carbons of the diols. However, glycine (2-13C), L-serine (2,3,3-d3) and L-methionine (methyl-d3) entered the biomethylation pathway. Neither pyruvate (2,3-13C2), acetate (1,2-13C2), acetaldehyde (d4) nor ethanol (ethyl-d5) labeled the 2,3-propane carbons of the diols at the 4-10 mM level. Pyruvate (2,3-13C2) and L-serine (2,3,3-d3) (which also entered the biomethylation pathway) did, however, effectively label the 2,3-propane carbons of the alpha-ketols and diols at the 40 mM level as evidenced by mass spectrometry. Glycerol (1,1,2,3,3-d5) also appeared to label one of the 2,3-propane carbons (ca. 5% as 2H2 in the C3 side chain) as suggested by mass spectrometric data and also entered the biomethylation pathway, likely via amino acid synthesis. Glycerol (through pyruvate), therefore, likely supplies C2 and C3 of the propane side chain with arylpropane diol biosynthesis. Incubation of B. adusta with synthetic [2-2H1, 2-18O]-glycerol showed that neither 2H nor 18O were incorporated in the alpha-ketols or diols. The oxygen atom on the C2 of the ketols/diols, therefore, does not appear to come from the oxygen atom on the C2 of glycerol. Glycerol, however, can readily form L-serine (which can then form pyruvate via PLP/serine dehydratase and involve transamination washing out the 18O label and providing the oxygen from water), and can then go on to label the C2-unit. Labeled alpha-ketol, phenyl acetyl carbinol (5) (PAC; ring-d(5), 2,3-13C2 propane) cultured with B. adusta leads to stereospecific reduction to the (1R,2S)-diol (6) (ring-d5 and 2,3-13C2); in all other metabolites produced, the 2,3-13C2) label is washed out. Incubation of the fungus with 4-fluorobenzaldehyde (13) produces a pooling of predominantly erythro (1R,2S) 1-(4'-fluorophenyl)-1,2-propane diol (18 as diacetate) (through the corresponding alpha-ketols 16, 17). Blocking the para-position with fluorine thus appears to prevent ring oxygenation and also chlorination, forcing the conclusion that para-ring oxygenation precedes meta-chlorination.

摘要

烟管菌(Bjerkandera adusta)产生多种氯代代谢产物,包括氯化茴香基代谢产物(CAMs)和1-芳基丙烷-1,2-二醇(1、2、3、4),它们是L-苯丙氨酸的特异性代谢产物。这些二醇是由一个C7单元(苄基,来自L-苯丙氨酸)和一个来源不明的C2单元立体选择性生物合成的,主要为赤藓糖型(1R,2S)对映体。在测试的作为可能的C2单元的标记氨基酸中,在4-10 mM水平下,未发现有能有效标记二醇中2,3-丙烷碳的。然而,甘氨酸(2-13C)、L-丝氨酸(2,3,3-d3)和L-甲硫氨酸(甲基-d3)进入了生物甲基化途径。丙酮酸(2,3-13C2)、乙酸盐(1,2-13C2)、乙醛(d4)和乙醇(乙基-d5)在4-10 mM水平下均未标记二醇中2,3-丙烷碳。然而,丙酮酸(2,3-13C2)和L-丝氨酸(2,3,3-d3)(也进入生物甲基化途径)在40 mM水平下确实有效地标记了α-酮醇和二醇中2,3-丙烷碳,这通过质谱得到了证实。甘油(1,1,2,3,3-d5)似乎也标记了2,3-丙烷碳中的一个(在C3侧链中约5%为2H2),质谱数据表明其也进入了生物甲基化途径,可能是通过氨基酸合成。因此,甘油(通过丙酮酸)可能为芳基丙烷二醇生物合成提供丙烷侧链的C2和C3。用合成的[2-2H1, 2-18O]-甘油培养烟管菌表明,α-酮醇或二醇中既未掺入2H也未掺入18O。因此酮醇/二醇C2上的氧原子似乎并非来自甘油C2上的氧原子。然而,甘油可以很容易地形成L-丝氨酸(然后可通过磷酸吡哆醛/丝氨酸脱水酶形成丙酮酸,并通过转氨作用洗去18O标记并提供来自水的氧),然后继续标记C2单元。用标记的α-酮醇苯乙酰甲醇(5)(PAC;环-d(5),2,3-13C2丙烷)培养烟管菌会导致其立体选择性还原为(1R,2S)-二醇(6)(环-d5和2,3-13C2);在产生的所有其他代谢产物中,2,3-13C2标记被洗去。用4-氟苯甲醛(13)培养该真菌会产生主要为赤藓糖型(1R,2S)的1-(4'-氟苯基)-1,2-丙二醇(18,以二乙酸酯形式)(通过相应的α-酮醇16、17)。用氟阻断对位似乎可防止环氧化和氯化,由此得出结论,对位环氧化先于间位氯化。

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