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底物和钾对嗜盐甲烷古菌葡萄牙嗜盐甲烷菌中甜菜碱合成酶甘氨酸-肌氨酸-二甲基甘氨酸N-甲基转移酶的影响。

Effects of substrate and potassium on the betaine-synthesizing enzyme glycine sarcosine dimethylglycine N-methyltransferase from a halophilic methanoarchaeon Methanohalophilus portucalensis.

作者信息

Lai Mei-Chin, Wang Chia-Chi, Chuang Ming-Jen, Wu Yen-Chi, Lee Yu-Chien

机构信息

Department of Life Sciences, National Chung Hsing University, Taichung, Taiwan, ROC.

出版信息

Res Microbiol. 2006 Dec;157(10):948-55. doi: 10.1016/j.resmic.2006.08.007. Epub 2006 Oct 26.

Abstract

Methanohalophilus portucalensis FDF1 can synthesize the compatible solute betaine de novo through the methylation of glycine, sarcosine and dimethylglycine with the methyl group from S-adenosylmethionine. After separation by DEAE-Sephacel ion chromatography using a KCl step gradient, glycine, sarcosine and dimethylglycine methytransfer (GSDMT) activities were detected in a single peak. The estimated molecular weight of GSDMT was 240 kDa and 2-D gel analysis indicated it was separated into four subunits (52 kDa) with different pI. The PBE94 chromatofocusing column also separated GSDMT into four protein peaks A, B, C, D. Both peak B and D proteins possessed GSDMT activity, while the peak A protein only exhibited SDMT activity. The multiple methyltransferase activities of the large complex appear to be unique compared to other methyltransferases used in betaine synthesis. Further methyltransferase assays in response to different concentrations of KCl indicated that the peak D protein exhibited low GSDMT activity only when K(+) < or = 0.4 M. The peak B protein exhibited a higher GSDMT activity at 0.4 M K(+), while the peak A protein exhibited SDMT activity only at higher K(+) (0.8 M). These results suggest that the internal K(+) concentration regulates GSDMT activities and affects the net betaine accumulation in the cells.

摘要

葡萄牙嗜盐甲烷菌FDF1能够利用来自S-腺苷甲硫氨酸的甲基,通过甘氨酸、肌氨酸和二甲基甘氨酸的甲基化作用从头合成相容性溶质甜菜碱。使用KCl梯度洗脱通过DEAE-葡聚糖离子色谱法分离后,在单个峰中检测到甘氨酸、肌氨酸和二甲基甘氨酸甲基转移酶(GSDMT)活性。GSDMT的估计分子量为240 kDa,二维凝胶分析表明它被分离成四个具有不同pI的亚基(52 kDa)。PBE94聚焦色谱柱也将GSDMT分离成四个蛋白峰A、B、C、D。峰B和D蛋白都具有GSDMT活性,而峰A蛋白仅表现出SDMT活性。与用于甜菜碱合成的其他甲基转移酶相比,这种大复合物的多种甲基转移酶活性似乎是独特的。针对不同浓度KCl的进一步甲基转移酶测定表明,仅当K(+)≤0.4 M时,峰D蛋白才表现出低GSDMT活性。在0.4 M K(+)时,峰B蛋白表现出较高的GSDMT活性,而峰A蛋白仅在较高K(+)(0.8 M)时表现出SDMT活性。这些结果表明,细胞内K(+)浓度调节GSDMT活性并影响细胞中甜菜碱的净积累。

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