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鸡中进化保守的prmt1基因与其脊椎动物旁系同源基因prmt8的鉴定、染色体定位及表达分析

Identification, chromosomal arrangements and expression analyses of the evolutionarily conserved prmt1 gene in chicken in comparison with its vertebrate paralogue prmt8.

作者信息

Wang Yi-Chun, Wang Chien-Wen, Lin Wen-Chang, Tsai Yun-Jung, Chang Chien-Ping, Lee Yu-Jen, Lin Min-Jon, Li Chuan

机构信息

Department of Biomedical Sciences, Chung Shan Medical University, Taichung, Taiwan.

Department of Medical Research, Chung Shan Medical University Hospital, Taichung, Taiwan, ROC.

出版信息

PLoS One. 2017 Sep 21;12(9):e0185042. doi: 10.1371/journal.pone.0185042. eCollection 2017.

Abstract

Nine protein arginine methyltransferases (PRMTs) are conserved in mammals and fish. Among these, PRMT1 is the major type I PRMT for asymmetric dimethylarginine (ADMA) formation and is the most conserved and widely distributed one. Two chicken prmt1 splicing variants were assembled and confirmed by RT-PCR experiments. However, only two scaffolds containing single separate prmt1 exon with high GC contents are present in the current chicken genome assembly. Besides, prmt1 exons are scattered in separate small scaffolds in most avian species. Complete prmt1 gene has only been predicted from two falcon species with few neighboring genes. Crocodilians are considered close to the common ancestor shared by crocodilians and birds. The gene arrangements around prmt1 in American alligator are different from that in birds but are largely conserved in human. Orthologues of genes in a large segment of human chromosomal 19 around PRMT1 are missing or not assigned to the current chicken chromosomes. In comparison, prmt8, the prmt1 paralogue, is on chicken chromosome 1 with the gene arrangements downstream of prmt8 highly conserved in birds, crocodilians, and human. However, the ones upstream vary greatly in birds. Biochemically, we found that though prmt1 transcripts were detected, limited or none PRMT1 protein was present in chicken tissues. Moreover, a much higher level of PRMT8 protein was detected in chicken brain than in mouse brain. While PRMT8 is brain specific in other vertebrate species studied, low level of PRMT8 was present in chicken but not mouse liver and muscle. We also showed that the ADMA level in chicken was similar to that in mouse. This study provides the critical information of chicken PRMT1 and PRMT8 for future analyses of the function of protein arginine methyltransferases in birds.

摘要

九种蛋白质精氨酸甲基转移酶(PRMTs)在哺乳动物和鱼类中是保守的。其中,PRMT1是形成不对称二甲基精氨酸(ADMA)的主要I型PRMT,也是最保守且分布最广泛的一种。通过RT-PCR实验组装并确认了两种鸡prmt1剪接变体。然而,在当前的鸡基因组组装中,仅存在两个含有高GC含量的单个独立prmt1外显子的支架。此外,在大多数鸟类物种中,prmt1外显子分散在单独的小支架中。仅从两种相邻基因很少的隼形目物种中预测出了完整的prmt1基因。鳄鱼被认为与鳄鱼和鸟类的共同祖先关系密切。美国短吻鳄中prmt1周围的基因排列与鸟类不同,但在人类中基本保守。PRMT1周围人类染色体19大片段中的基因直系同源物在当前鸡染色体上缺失或未被定位。相比之下,prmt1的旁系同源物prmt8位于鸡的1号染色体上,其下游的基因排列在鸟类、鳄鱼和人类中高度保守。然而,其上游在鸟类中差异很大。在生物化学方面,我们发现尽管检测到了prmt1转录本,但鸡组织中存在的PRMT1蛋白有限或没有。此外,在鸡脑中检测到的PRMT8蛋白水平比在小鼠脑中高得多。虽然在其他研究的脊椎动物物种中PRMT8是脑特异性的,但在鸡中PRMT8水平较低,而在小鼠肝脏和肌肉中不存在。我们还表明,鸡中的ADMA水平与小鼠中的相似。这项研究为未来分析鸟类中蛋白质精氨酸甲基转移酶的功能提供了鸡PRMT1和PRMT8的关键信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e76a/5608299/ecf3e06b0f4b/pone.0185042.g001.jpg

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