GeneSet Information

Tier II GS224386 • Pancreatic morphology QTL 4 (Pancm4 Published QTL Chr 4)

DESCRIPTION:

QTL Associated with Pancreas weight. On Chromosome 4 with a LOD score= 11.35, p-value =. From a(n) of

LABEL:

QTL-Pancm4-Rat-Chr 4

SCORE TYPE:

Binary

DATE ADDED:

2015-06-10

DATE UPDATED:

2020-05-06

SPECIES:

AUTHORS:

Yagil C, Barkalifa R, Sapojnikov M, Wechsler A, Ben-Dor D, Weksler-Zangen S, Kaiser N, Raz I, Yagil Y

TITLE:

Metabolic and genomic dissection of diabetes in the Cohen rat.

JOURNAL:

Physiological genomics None None, Vol 29, pp. 181-92

ABSTRACT:

1. Physiol Genomics. 2007 Apr 24;29(2):181-92. Epub 2007 Jan 9. Metabolic and genomic dissection of diabetes in the Cohen rat. Yagil C(1), Barkalifa R, Sapojnikov M, Wechsler A, Ben-Dor D, Weksler-Zangen S, Kaiser N, Raz I, Yagil Y. Author information: (1)Laboratory for Molecular Medicine and Israeli Rat Genome Center, Ben-Gurion University Barzilai Medical Center Campus, Ashkelon, Israel. chyagil@bgu.ac.il We investigated the metabolic and genetic basis of diabetes in the Cohen Diabetic rat, a model of diet-induced diabetes, as a means to identify the molecular mechanisms involved. By altering individual components in the diabetogenic diet, we established that the dietary susceptibility that leads to the development of diabetes in this model is directly related to the high casein and low copper content in chow. The development of diabetes is accompanied by depletion of the acini from the exocrine pancreas and replacement with fat cells, while the appearance of the islets of Langerhans remains intact. With reversion back from diabetogenic to regular diet, the diabetic phenotype disappears but the histological changes in the exocrine pancreas prevail. Using positional cloning, we detected a major quantitative trait locus (QTL) on rat chromosome 4 with a chromosomal span of 4.9 cM, and two additional loci on chromosomes 7 and X. A screen for genes within that QTL in the rat and in the syntenic regions in mouse and man revealed only 23 candidate genes. Notable among these genes is Ica1, which has been causally associated with diabetes and bovine casein. We conclude that the development of diabetes in our model is dependent upon high casein and low copper in diet, that it is accompanied by histomorphological changes in the exocrine but not endocrine pancreas, that it is reversible, and that it is associated with a major QTL on chromosome 4 in which we detected Ica1, a high priority candidate gene. PMID: 17213368 [PubMed - indexed for MEDLINE] PUBMED: 17213368
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