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1-O-吲哚-3-基乙酰基-β-D-葡萄糖的异构化。1-O、4-O和6-O-吲哚-3-基乙酰基-β-D-葡萄糖的酶促水解以及由激素代谢复合物进行的吲哚-3-乙酰甘油的酶促合成。

Isomerization of 1-O-indol-3-ylacetyl-beta-D-glucose. Enzymatic hydrolysis of 1-O, 4-O, and 6-O-indol-3-ylacetyl-beta-D-glucose and the enzymatic synthesis of indole-3-acetyl glycerol by a hormone metabolizing complex.

作者信息

Kowalczyk S, Bandurski R S

机构信息

Department of Botany and Plant Pathology, Michigan State University, East Lansing 48824-1312.

出版信息

Plant Physiol. 1990;94(1):4-12. doi: 10.1104/pp.94.1.4.

Abstract

The first compound in the series of reactions leading to the ester conjugates of indole-3-acetic acid (IAA) in kernels of Zea mays sweet corn is the acyl alkyl acetal, 1-O-indol-3-ylacetyl-beta-D-glucose (1-O-IAGlu). The enzyme catalyzing the synthesis of this compound is UDP-glucose:indol-3-ylacetate glucosyl-transferase (IAGlu synthase). The IAA moiety of the high energy compound 1-O-IAGlu may be enzymatically transferred to myo-inositol or to glycerol or the 1-O-IAGlu may be enzymatically hydrolyzed. Alternatively, nonenzymatic acyl migration may occur to yield the 2-O, 4-O, and 6-O esters of IAA and glucose. The 4-O and 6-O esters may then be enzymatically hydrolyzed to yield free IAA and glucose. This work reports new enzymatic activities, the transfer of IAA from 1-O-IAGlu to glycerol, and the enzyme-catalyzed hydrolysis of 4-O and 6-O-IAGlu. Data is also presented on the rate of non-enzymatic acyl migration of IAA from the 1-O to the 4-O and 6-O positions of glucose. We also report that enzymes catalyzing the synthesis of 1-O-IAGlu and the hydrolysis of 1-O, 4-O, and 6-O-IAGlu fractionate as a hormone metabolizing complex. The association of synthetic and hydrolytic capabilities in enzymes which cofractionate may have physiological significance.

摘要

在甜玉米籽粒中,导致吲哚 - 3 - 乙酸(IAA)酯共轭物形成的一系列反应中的第一个化合物是酰基烷基缩醛,即1 - O - 吲哚 - 3 - 基乙酰基 - β - D - 葡萄糖(1 - O - IAGlu)。催化该化合物合成的酶是UDP - 葡萄糖:吲哚 - 3 - 乙酸葡萄糖基转移酶(IAGlu合酶)。高能化合物1 - O - IAGlu的IAA部分可通过酶促反应转移到肌醇或甘油上,或者1 - O - IAGlu可被酶促水解。另外,可能会发生非酶促酰基迁移,生成IAA和葡萄糖的2 - O、4 - O和6 - O酯。然后4 - O和6 - O酯可被酶促水解,生成游离的IAA和葡萄糖。这项工作报道了新的酶活性,即IAA从1 - O - IAGlu转移到甘油,以及4 - O和6 - O - IAGlu的酶促水解。还给出了IAA从葡萄糖的1 - O位向4 - O和6 - O位进行非酶促酰基迁移速率的数据。我们还报道,催化1 - O - IAGlu合成以及1 - O、4 - O和6 - O - IAGlu水解的酶作为一种激素代谢复合物进行分级分离。共分级分离的酶中合成和水解能力的关联可能具有生理意义。

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