Characterization of protein arginine methyltransferases in porcine brain.

Chien-Jen Hung, Da-Huang Chen, Yi-Ting Shen, Yi-Chen Li, Yi-Wei Lin, Mingli Hsieh, Chuan Li
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引用次数: 8

Abstract

Protein arginine methylation is a posttranslational modification involved in various cellular functions including cell signaling, protein subcellular localization and transcriptional regulation. We analyze the protein arginine methyltransferases (PRMTs) that catalyze the formation of methylarginines in porcine brain. We fractionated the brain extracts and determined the PRMT activities as well as the distribution of different PRMT proteins in subcellular fractions of porcine brain. The majority of the type I methyltransferase activities that catalyze the formation of asymmetric dimethylarginines was in the cytosolic S3 fraction. High specific activity of the methyltransferase was detected in the S4 fraction (high-salt stripping of the ultracentrifugation precipitant P3 fraction), indicating that part of the PRMT was peripherally associated with membrane and ribosomal fractions. The amount and distribution of PRMT1 are consistent with the catalytic activity. The elution patterns from gel filtration and anion exchange chromatography also indicate that the type I activity in S3 and S4 are mostly from PRMT1. Our results suggest that part of the type I arginine methyltransferases in brains, mainly PRMT1, are sequestered in an inactive form as they associated with membranes or large subcellular complexes. Our biochemical analyses confirmed the complex distribution of different PRMTs and implicate their regulation and catalytic activities in brain.

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猪脑内蛋白精氨酸甲基转移酶的研究。
蛋白精氨酸甲基化是一种涉及多种细胞功能的翻译后修饰,包括细胞信号传导、蛋白亚细胞定位和转录调控。我们分析了猪脑中催化甲基精氨酸形成的蛋白精氨酸甲基转移酶(PRMTs)。我们对猪脑提取物进行了分离,测定了PRMT活性以及不同PRMT蛋白在猪脑亚细胞组分中的分布。催化不对称二甲基精氨酸形成的I型甲基转移酶活性主要存在于细胞质S3部分。在S4部分(超离心沉淀剂P3部分的高盐剥离)中检测到高比活性的甲基转移酶,表明部分PRMT与膜和核糖体部分外周相关。PRMT1的数量和分布与催化活性一致。凝胶过滤和阴离子交换色谱的洗脱模式也表明S3和S4中的I型活性主要来自PRMT1。我们的研究结果表明,大脑中部分I型精氨酸甲基转移酶,主要是PRMT1,在与膜或大的亚细胞复合物相关时以非活性形式被隔离。我们的生化分析证实了不同PRMTs的复杂分布,并暗示了它们在大脑中的调节和催化活性。
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