Xu Hao, Bygdell Joakim, Wingsle Gunnar, Byström Anders S
Department of Molecular Biology, Umeå University, 901 87, Umeå, Sweden.
Department of Forest Genetics and Plant Physiology, Umeå Plant Science Centre, Swedish University of Agricultural Sciences, 901 87, Umeå, Sweden.
Microbiologyopen. 2015 Dec;4(6):867-78. doi: 10.1002/mbo3.285. Epub 2015 Sep 25.
In eukaryotic organisms, Elongator is a six-subunit protein complex required for the formation of 5-carbamoylmethyl (ncm(5) ) and 5-methylcarboxymethyl (mcm(5) ) side chains on uridines present at the wobble position (U34 ) of tRNA. The open reading frame encoding the largest Elongator subunit Elp1p has two in-frame 5' AUG methionine codons separated by 48 nucleotides. Here, we show that the second AUG acts as the start codon of translation. Furthermore, Elp1p was previously shown to exist in two major forms of which one was generated by proteolysis of full-length Elp1p and this proteolytic cleavage was suggested to regulate Elongator complex activity. In this study, we found that the vacuolar protease Prb1p was responsible for the cleavage of Elp1p. The cleavage occurs between residues 203 (Lys) and 204 (Ala) as shown by amine reactive Tandem Mass Tag followed by LC-MS/MS (liquid chromatography mass spectrometry) analysis. However, using a modified protein extraction procedure, including trichloroacetic acid, only full-length Elp1p was observed, showing that truncation of Elp1p is an artifact occurring during protein extraction. Consequently, our results indicate that N-terminal truncation of Elp1p is not likely to regulate Elongator complex activity.
在真核生物中,延伸因子是一种六亚基蛋白复合物,对于在tRNA摆动位置(U34)的尿苷上形成5-氨甲酰甲基(ncm(5))和5-甲基羧甲基(mcm(5))侧链是必需的。编码最大延伸因子亚基Elp1p的开放阅读框有两个框内5' AUG甲硫氨酸密码子,相隔48个核苷酸。在此,我们表明第二个AUG作为翻译的起始密码子。此外,Elp1p先前已显示存在两种主要形式,其中一种是由全长Elp1p的蛋白水解产生的,并且这种蛋白水解切割被认为可调节延伸因子复合物的活性。在本研究中,我们发现液泡蛋白酶Prb1p负责Elp1p的切割。如胺反应性串联质量标签随后进行液相色谱 - 质谱/质谱(LC-MS/MS)分析所示,切割发生在残基203(赖氨酸)和204(丙氨酸)之间。然而,使用包括三氯乙酸在内的改良蛋白质提取程序,仅观察到全长Elp1p,表明Elp1p的截短是蛋白质提取过程中出现的假象。因此,我们的结果表明Elp1p的N端截短不太可能调节延伸因子复合物的活性。