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Identification of phosphorylation sites in the nucleocapsid protein (N protein) of SARS-coronavirus

机译:SARS冠状病毒核衣壳蛋白(N蛋白)中磷酸化位点的鉴定

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After decoding the genome of SARS-coronavirus (SARS-CoV), next challenge is to understand how this virus causes the illness at molecular bases. Of the viral structural proteins, the N protein plays a pivot role in assembly process of viral particles as well as viral replication and transcription. The SARS-CoV N proteins expressed in the eukaryotes, such as yeast and HEK293 cells, appeared in the multiple spots on two-dimensional electrophoresis (2DE), whereas the proteins expressed in E. coli showed a single 2DE spot. These 2DE spots were further examined by Western blot and MALDI-TOF/TOF MS, and identified as the N proteins with differently apparent pI values and similar molecular mass of 50 kDa. In the light of the observations and other evidences, a hypothesis was postulated that the SARS-CoV N protein could be phosphorylated in eukaryotes. To locate the plausible regions of phosphorylation in the N protein, two truncated N proteins were generated in E. coli and treated with PKC alpha. The two truncated N proteins after incubation of PKC alpha exhibited the differently electrophoretic behaviors on 2DE, suggesting that the region of 1-256 aa in the N protein was the possible target for PKC alpha phosphorylation. Moreover, the SARS-CoV N protein expressed in yeast were partially digested with trypsin and carefully analyzed by MALDI-TOF/TOF MS. In contrast to the completely tryptic digestion, these partially digested fragments generated two new peptide mass signals with neutral loss, and MS/MS analysis revealed two phosphorylated peptides located at the "dense serine" island in the N protein with amino acid sequences, GFYAEGSRGGSQASSRSSSR and GNSGNSTPGSSRGNSPARMASGGGK. With the PKC alpha phosphorylation treatment and the partially tryptic digestion, the N protein expressed in E. coli released the same peptides as observed in yeast cells. Thus, this investigation provided the preliminary data to determine the phosphorylation sites in the SARS-CoV N protein, and partially clarified the argument regarding the phosphorylation possibility of the N protein during the infection process of SARS-CoV to human host. 0 2007 Elsevier B.V. All rights reserved.
机译:对SARS冠状病毒(SARS-CoV)的基因组进行解码后,下一个挑战是了解该病毒如何在分子基础上引起疾病。在病毒结构蛋白中,N蛋白在病毒颗粒的组装过程以及病毒复制和转录中起着关键作用。在真核生物中表达的SARS-CoV N蛋白(例如酵母和HEK293细胞)出现在二维电泳(2DE)的多个斑点中,而在大肠杆菌中表达的蛋白质则显示一个2DE斑点。通过蛋白质印迹和MALDI-TOF / TOF MS进一步检查了这些2DE斑点,并将其鉴定为具有不同表观pI值和相似分子量为50 kDa的N蛋白。根据这些观察结果和其他证据,假设一个假设,SARS-CoV N蛋白可能在真核生物中被磷酸化。为了定位N蛋白中可能的磷酸化区域,在大肠杆菌中产生了两个截短的N蛋白,并用PKCα处理。 PKCα孵育后,两个截短的N蛋白在2DE上表现出不同的电泳行为,这表明N蛋白中的1-256aa区域可能是PKCα磷酸化的目标。此外,用胰蛋白酶消化酵母中表达的SARS-CoV N蛋白,并通过MALDI-TOF / TOF MS进行仔细分析。与完全胰蛋白酶消化相反,这些部分消化的片段产生了两个具有中性损失的新肽质量信号,并且MS / MS分析显示位于氨基酸序列为N的N蛋白“密集丝氨酸”岛上的两个磷酸化肽,GFYAEGSRGGSQASSRSSSR和GNSGNSTPGSSRGNSPARMASGGGK。通过PKCα磷酸化处理和部分胰蛋白酶消化,在大肠杆菌中表达的N蛋白释放出与酵母细胞中观察到的相同的肽。因此,该研究提供了确定SARS-CoV N蛋白中磷酸化位点的初步数据,并部分阐明了有关SARS-CoV对人宿主感染过程中N蛋白磷酸化可能性的论点。 0 2007 Elsevier B.V.保留所有权利。

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