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小鼠中IgLON家族基因的启动子特异性表达及基因组结构

Promoter-Specific Expression and Genomic Structure of IgLON Family Genes in Mouse.

作者信息

Vanaveski Taavi, Singh Katyayani, Narvik Jane, Eskla Kattri-Liis, Visnapuu Tanel, Heinla Indrek, Jayaram Mohan, Innos Jürgen, Lilleväli Kersti, Philips Mari-Anne, Vasar Eero

机构信息

Department of Physiology, Institute of Biomedicine and Translational Medicine, University of Tartu Tartu, Estonia.

Department of Physiology, Institute of Biomedicine and Translational Medicine, University of TartuTartu, Estonia; Division of Pharmacology and Pharmacotherapy, Faculty of Pharmacy, University of HelsinkiHelsinki, Finland.

出版信息

Front Neurosci. 2017 Feb 2;11:38. doi: 10.3389/fnins.2017.00038. eCollection 2017.

Abstract

IgLON family is composed of five genes: Lsamp, Ntm, Opcml, Negr1, and Iglon5; encoding for five highly homologous neural adhesion proteins that regulate neurite outgrowth and synapse formation. In the current study we performed analysis revealing that Ntm and Opcml display similar genomic structure as previously reported for Lsamp, characterized by two alternative promotors 1a and 1b. Negr1 and Iglon5 transcripts have uniform 5' region, suggesting single promoter. Iglon5, the recently characterized family member, shares high level of conservation and structural qualities characteristic to IgLON family such as N-terminal signal peptide, three Ig domains, and GPI anchor binding site. By using custom 5'-isoform-specific TaqMan gene-expression assay, we demonstrated heterogeneous expression of IgLON transcripts in different areas of mouse brain and several-fold lower expression in selected tissues outside central nervous system. As an example, the expression of IgLON transcripts in urogenital and reproductive system is in line with repeated reports of urogenital tumors accompanied by mutations in IgLON genes. Considering the high levels of intra-family homology shared by IgLONs, we investigated potential compensatory effects at the level of IgLON isoforms in the brains of mice deficient of one or two family members. We found that the lack of IgLONs is not compensated by a systematic quantitative increase of the other family members. On the contrary, the expression of Ntm 1a transcript and NEGR1 protein was significantly reduced in the frontal cortex of Lsamp-deficient mice suggesting that the expression patterns within IgLON family are balanced coherently. The actions of individual IgLONs, however, can be antagonistic as demonstrated by differential expression of Syp in deletion mutants of IgLONs. In conclusion, we show that the genomic twin-promoter structure has impact on both anatomical distribution and intra-family interactions of IgLON family members. Remarkable variety in the activity levels of 1a and 1b promoters both in the brain and in other tissues, suggests complex functional regulation of IgLONs by alternative signal peptides driven by 1a and 1b promoters.

摘要

IgLON家族由五个基因组成:Lsamp、Ntm、Opcml、Negr1和Iglon5;它们编码五种高度同源的神经粘附蛋白,这些蛋白调节神经突生长和突触形成。在本研究中,我们进行的分析表明,Ntm和Opcml具有与先前报道的Lsamp相似的基因组结构,其特征是有两个可变启动子1a和1b。Negr1和Iglon5转录本具有统一的5'区域,表明为单一启动子。Iglon5是最近鉴定的家族成员,具有高水平的保守性和与IgLON家族特征相同的结构特性,如N端信号肽、三个Ig结构域和GPI锚定结合位点。通过使用定制的5'-异构体特异性TaqMan基因表达分析,我们证明了IgLON转录本在小鼠脑的不同区域存在异质表达,而在中枢神经系统以外的选定组织中的表达则低几倍。例如,IgLON转录本在泌尿生殖系统和生殖系统中的表达与关于泌尿生殖系统肿瘤伴有IgLON基因突变的反复报道一致。考虑到IgLON家族成员之间存在高水平的家族内同源性,我们研究了在缺失一个或两个家族成员的小鼠大脑中,IgLON异构体水平上的潜在补偿作用。我们发现,其他家族成员的系统性定量增加并不能补偿IgLON的缺失。相反,在Lsamp缺陷小鼠的额叶皮质中,Ntm 1a转录本和NEGR1蛋白的表达显著降低,这表明IgLON家族内的表达模式是协调平衡的。然而,正如IgLON缺失突变体中Syp的差异表达所表明的那样,单个IgLON的作用可能是拮抗的。总之,我们表明基因组双启动子结构对IgLON家族成员的解剖分布和家族内相互作用都有影响。大脑和其他组织中1a和1b启动子活性水平的显著差异,表明由1a和1b启动子驱动的可变信号肽对IgLON进行复杂的功能调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b6e9/5288359/79c57dd90ae9/fnins-11-00038-g0001.jpg

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