Suppr超能文献

三个相互作用的基因组位点包含两个新突变,是饮食诱导型糖尿病进化的基础。

Three interacting genomic loci incorporating two novel mutations underlie the evolution of diet-induced diabetes.

作者信息

Yagil Yoram, Markus Barak, Kohen Refael, Yagil Chana

机构信息

Laboratory for Molecular Medicine and Israeli Rat Genome Center, Barzilai University Medical Center, Ashkelon.

Faculty of Health Sciences, Ben-Gurion University of the Negev, Beer Sheba, Israel.

出版信息

Mol Med. 2016 Oct;22:560-569. doi: 10.2119/molmed.2016.00114. Epub 2016 Jul 26.

Abstract

We investigated the pathophysiology of diet-induced diabetes in the Cohen diabetic rat (CDs/y) from its induction to its chronic phase, using a multi-layered integrated genomic approach. We identified by linkage analysis two diabetes-related quantitative trait loci on RNO4 and RNO13. We determined their functional contribution to diabetes by chromosomal substitution, using congenic and consomic strains. To identify within these loci genes of relevance to diabetes, we sequenced the genome of CDs/y and compared it to 25 other rat strains. Within the RNO4 locus, we detected a novel high impact deletion in the gene that was unique to CDs/y. Within the RNO13 locus, we found multiple SNPs and INDELs that were unique to CDs/y but were unable to prioritize any of the genes. Genome wide screening identified a novel third locus not detected by linkage analysis that consisted of a novel high impact deletion on RNO11 that was unique to CDs/y and that involved the gene. Using co-segregation analysis, we investigated in silico the relative contribution to the diabetic phenotype and the interaction between the three genomic loci on RNO4, RNO11 and RNO13. We found that the RNO4 locus plays a major role during the induction of diabetes, whereas the genomic loci on RNO13 and RNO11, while interacting with the RNO4 locus, contribute more significantly to the diabetic phenotype during the chronic phase of the disease. The mechanisms whereby the mutations on RNO4 and 11 and the RNO13 locus contribute to the development of diabetes are under continuing investigation.

摘要

我们采用多层综合基因组学方法,研究了科恩糖尿病大鼠(CDs/y)从糖尿病诱导期到慢性期的饮食诱导性糖尿病的病理生理学。通过连锁分析,我们在大鼠4号染色体(RNO4)和大鼠13号染色体(RNO13)上鉴定出两个与糖尿病相关的数量性状基因座。我们利用同源近交系和染色体置换系,通过染色体置换确定了它们对糖尿病的功能贡献。为了在这些基因座中鉴定与糖尿病相关的基因,我们对CDs/y大鼠的基因组进行了测序,并将其与其他25种大鼠品系进行了比较。在RNO4基因座内,我们在 基因中检测到一个新的、对CDs/y大鼠来说是独特的高影响缺失。在RNO13基因座内,我们发现了多个对CDs/y大鼠来说是独特的单核苷酸多态性(SNP)和插入缺失(INDEL),但无法确定任何一个基因的优先级。全基因组筛选确定了一个连锁分析未检测到的新的第三个基因座,该基因座由大鼠11号染色体(RNO11)上一个对CDs/y大鼠来说是独特的、涉及 基因的新的高影响缺失组成。利用共分离分析,我们在计算机上研究了这三个基因组基因座(RNO4、RNO11和RNO13)对糖尿病表型的相对贡献以及它们之间的相互作用。我们发现,RNO4基因座在糖尿病诱导期起主要作用,而RNO13和RNO11基因座虽然与RNO4基因座相互作用,但在疾病慢性期对糖尿病表型的贡献更为显著。RNO4和11号染色体上的突变以及RNO13基因座导致糖尿病发生的机制正在持续研究中。

相似文献

1
Three interacting genomic loci incorporating two novel mutations underlie the evolution of diet-induced diabetes.
Mol Med. 2016 Oct;22:560-569. doi: 10.2119/molmed.2016.00114. Epub 2016 Jul 26.
2
Sex-specific genetic dissection of diabetes in a rodent model identifies Ica1 and Ndufa4 as major candidate genes.
Physiol Genomics. 2010 Aug;42(3):445-55. doi: 10.1152/physiolgenomics.00042.2010. Epub 2010 Jun 8.
4
Unmasking of proteinuria in the course of genetic dissection of nonproteinuric diabetic nephropathy.
Physiol Genomics. 2014 Jan 1;46(1):29-38. doi: 10.1152/physiolgenomics.00133.2013. Epub 2013 Nov 5.
7
Metabolic and genomic dissection of diabetes in the Cohen rat.
Physiol Genomics. 2007 Apr 24;29(2):181-92. doi: 10.1152/physiolgenomics.00210.2006. Epub 2007 Jan 9.
8
Congenic strains confirm the presence of salt-sensitivity QTLs on chromosome 1 in the Sabra rat model of hypertension.
Physiol Genomics. 2003 Jan 15;12(2):85-95. doi: 10.1152/physiolgenomics.00111.2002.
9
Geno-transcriptomic dissection of proteinuria in the uninephrectomized rat uncovers a molecular complexity with sexual dimorphism.
Physiol Genomics. 2010 Nov 29;42A(4):301-16. doi: 10.1152/physiolgenomics.00149.2010. Epub 2010 Sep 28.

本文引用的文献

1
SpeedSeq: ultra-fast personal genome analysis and interpretation.
Nat Methods. 2015 Oct;12(10):966-8. doi: 10.1038/nmeth.3505. Epub 2015 Aug 10.
2
LUMPY: a probabilistic framework for structural variant discovery.
Genome Biol. 2014 Jun 26;15(6):R84. doi: 10.1186/gb-2014-15-6-r84.
3
Stromal cell derived factor-2 (Sdf2): a novel protein expressed in mouse.
Int J Biochem Cell Biol. 2014 Aug;53:262-70. doi: 10.1016/j.biocel.2014.05.024. Epub 2014 May 28.
4
Unmasking of proteinuria in the course of genetic dissection of nonproteinuric diabetic nephropathy.
Physiol Genomics. 2014 Jan 1;46(1):29-38. doi: 10.1152/physiolgenomics.00133.2013. Epub 2013 Nov 5.
5
Genome sequencing reveals loci under artificial selection that underlie disease phenotypes in the laboratory rat.
Cell. 2013 Aug 1;154(3):691-703. doi: 10.1016/j.cell.2013.06.040. Epub 2013 Jul 25.
9
A framework for variation discovery and genotyping using next-generation DNA sequencing data.
Nat Genet. 2011 May;43(5):491-8. doi: 10.1038/ng.806. Epub 2011 Apr 10.
10
Geno-transcriptomic dissection of proteinuria in the uninephrectomized rat uncovers a molecular complexity with sexual dimorphism.
Physiol Genomics. 2010 Nov 29;42A(4):301-16. doi: 10.1152/physiolgenomics.00149.2010. Epub 2010 Sep 28.

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验