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植物中赖氨酸的生物合成:内消旋二氨基庚二酸脱氢酶的假定作用。

Biosynthesis of lysine in plants: the putative role of meso-diaminopimelate dehydrogenase.

作者信息

Chatterjee S P, Singh B K, Gilvarg C

机构信息

Department of Molecular Biology, Princeton University, NJ 08544.

出版信息

Plant Mol Biol. 1994 Oct;26(1):285-90. doi: 10.1007/BF00039539.

Abstract

Extracts from Chlamydomonas, corn, soybean and tobacco were tested for enzymes of the lysine biosynthetic pathway. Dihydrodipicolinic acid (DHD) synthase, DHD reductase, diaminopimelate (DAP) epimerase and DAP decarboxylase were present in all. However, in contrast to the report of Wenko et al., meso-DAP dehydrogenase could not be detected in extracts prepared from soybean. Moreover, it was not found in Chlamydomonas, corn and tobacco as well. In order to set an upper limit to the amount of meso-DAP dehydrogenase that might be present, reconstruction experiments were performed with soybean and corn extracts in which the conversion of dihydrodipicolinate to lysine was made dependent on the addition of limited amounts of the meso-DAP dehydrogenase purified from Bacillus sphaericus. The presence of DAP epimerase and the absence of meso-DAP dehydrogenase indicates that the meso-DAP dehydrogenase abbreviated pathway for lysine synthesis is not operative in plants.

摘要

对衣藻、玉米、大豆和烟草的提取物进行了赖氨酸生物合成途径中相关酶的检测。二氢吡啶二酸(DHD)合酶、DHD还原酶、二氨基庚二酸(DAP)差向异构酶和DAP脱羧酶在所有提取物中均有存在。然而,与温科等人的报告不同,在大豆提取物中未检测到内消旋-DAP脱氢酶。此外,在衣藻、玉米和烟草提取物中也未发现该酶。为了确定可能存在的内消旋-DAP脱氢酶的量的上限,用大豆和玉米提取物进行了重建实验,其中二氢吡啶甲酸盐向赖氨酸的转化依赖于添加从球形芽孢杆菌纯化的有限量的内消旋-DAP脱氢酶。DAP差向异构酶的存在和内消旋-DAP脱氢酶的缺失表明,赖氨酸合成的内消旋-DAP脱氢酶简化途径在植物中不起作用。

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