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首页> 外文期刊>Current Microbiology >A Common Transport System for Methionine, l-methionine-dl-Sulfoximine (MSX), and Phosphinothricin (PPT) in the Diazotrophic Cyanobacterium Nostoc muscorum
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A Common Transport System for Methionine, l-methionine-dl-Sulfoximine (MSX), and Phosphinothricin (PPT) in the Diazotrophic Cyanobacterium Nostoc muscorum

机译:重氮营养性蓝藻Nostoc muscorum中甲硫氨酸,L-甲硫氨酸-dl-磺胺嘧啶(MSX)和膦丝菌素(PPT)的通用转运系统

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摘要

We present evidence, for the first time, of the occurrence of a transport system common for amino acid methionine, and methionine/glutamate analogues l-methionine-dl-sulfoximine (MSX) and phosphinothricin (PPT) in cyanobacterium Nostoc muscorum. Methionine, which is toxic to cyanobacterium, enhanced its nitrogenase activity at lower concentrations. The cyanobacterium showed a biphasic pattern of methionine uptake activity that was competitively inhibited by the amino acids alanine, isoleucine, leucine, phenylalanine, proline, valine, glutamine, and asparagine. The methionine/glutamate analogue-resistant N. muscorum strains (MSX-R and PPT-R strains) also showed methionine-resistant phenotype accompanied by a drastic decrease in 35S methionine uptake activity. Treatment of protein extracts from these mutant strains with MSX and PPT reduced biosynthetic glutamine synthetase (GS) activity only in vitro and not in vivo. This finding implicated that MSX- and PPT-R phenotypes may have arisen due to a defect in their MSX and PPT transport activity. The simultaneous decrease in methionine uptake activity and in vitro sensitivity toward MSX and PPT of GS protein in MSX- and PPT-R strains indicated that methionine, MSX, and PPT have a common transport system that is shared by other amino acids as well in N. muscorum. Such information can become useful for isolation of methionine-producing cyanobacterial strains.
机译:我们首次提出证据,证明蓝变细菌Nostoc muscorum中普遍存在一种氨基酸甲硫氨酸和甲硫氨酸/谷氨酸类似物l-甲硫氨酸-dl-亚磺酰亚胺(MSX)和膦丝菌素(PPT)常见的运输系统。对蓝藻有毒的蛋氨酸在较低浓度下可增强其固氮酶活性。蓝细菌显示出甲硫氨酸摄取活性的两相模式,该竞争性被氨基酸丙氨酸,异亮氨酸,亮氨酸,苯丙氨酸,脯氨酸,缬氨酸,谷氨酰胺和天冬酰胺竞争性抑制。耐甲硫氨酸/谷氨酸类似物的N. muscorum菌株(MSX-R和PPT-R菌株)也表现出耐甲硫氨酸的表型,并伴随着35 S甲硫氨酸的摄取活性急剧下降。用MSX和PPT处理这些突变菌株的蛋白质提取物只会在体外而不是在体内降低生物合成的谷氨酰胺合成酶(GS)活性。这一发现暗示MSX-和PPT-R表型可能由于其MSX和PPT转运活性的缺陷而出现。在MSX-和PPT-R菌株中,蛋氨酸的摄取活性同时下降,并且对GS蛋白的MSX和PPT具有体外敏感性,这表明蛋氨酸,MSX和PPT具有共同的转运系统,该转运系统也与其他氨基酸共享粘胶这样的信息对于分离产生甲硫氨酸的蓝细菌菌株可能是有用的。

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  • 来源
    《Current Microbiology》 |2008年第5期|436-441|共6页
  • 作者单位

    Department of Biochemistry North-Eastern Hill University Shillong 793 022 India;

    Department of Biochemistry North-Eastern Hill University Shillong 793 022 India;

    Department of Biochemistry North-Eastern Hill University Shillong 793 022 India;

    Department of Biochemistry North-Eastern Hill University Shillong 793 022 India;

    Mizoram University Aizawl 796 009 Mizoram India;

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