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高粱中酪氨酸的生物合成:预苯酸转氨酶的特性

Tyrosine biosynthesis in Sorghum bicolor: characteristics of prephenate aminotransferase.

作者信息

Siehl D L, Connelly J A, Conn E E

出版信息

Z Naturforsch C J Biosci. 1986 Jan-Feb;41(1-2):79-86. doi: 10.1515/znc-1986-1-213.

Abstract

A stable activity which transfers the amino group from glutamate to prephenate was extracted from 4-day old etiolated shoots of sorghum. The activity was retained on DEAE cellulose and eluted as a single peak. Prephenate aminotransferase co-eluted with a very abundant alpha-ketoglutarate: aspartate aminotransferase, but heating at 70 degrees C resulted in loss of alpha-ketoglutarate: aspartate activity with nearly full retention of prephenate: glutamate aminotransferase activity. The heated enzyme displayed high affinity and specificity for prephenate. Among 7 donors tested, only glutamate, and aspartate at less than 20% the rate with glutamate, supported prephenate aminotransferase activity. In the reverse direction, a reaction rate comparable to that in the forward direction was unchanged as the concentration of alpha-ketoglutarate was reduced from 1.0 to 0.09 mM. The apparent Km for arogenate was 0.8 mM. The forward reaction was unaffected by the inclusion of tyrosine, phenylalanine or tryptophan. Together with the discovery of arogenate dehydrogenase in sorghum [3], these data indicate that, in the sorghum plant, tyrosine derives from prephenate by transamination and aromatization, rather than the reverse sequence.

摘要

从4日龄高粱黄化苗中提取出一种稳定的活性物质,它能将谷氨酸的氨基转移到预苯酸上。该活性物质保留在DEAE纤维素上,并以单峰形式洗脱。预苯酸转氨酶与一种非常丰富的α-酮戊二酸:天冬氨酸转氨酶共洗脱,但在70℃加热会导致α-酮戊二酸:天冬氨酸活性丧失,而预苯酸:谷氨酸转氨酶活性几乎完全保留。加热后的酶对预苯酸表现出高亲和力和特异性。在测试的7种供体中,只有谷氨酸以及活性仅为谷氨酸20%以下的天冬氨酸能支持预苯酸转氨酶活性。在反向反应中,当α-酮戊二酸浓度从1.0 mM降至0.09 mM时,与正向反应相当的反应速率没有变化。对莽草酸的表观Km值为0.8 mM。正向反应不受酪氨酸、苯丙氨酸或色氨酸的影响。连同在高粱中发现的莽草酸脱氢酶[3],这些数据表明,在高粱植株中,酪氨酸是通过转氨作用和芳构化作用从预苯酸衍生而来,而不是相反的顺序。

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