Animal models have played, and will continue to play, an important role in determining function of individual genes in the pathogenesis of diabetes mellitus. Yet, with the impending availability of the genome sequences for both humans and mice we lack tools and strategies for efficiently assessing the functional importance of various genes of pancreas function and development. During recent years, the Cre/loxP recombinase system has been developed and adapted to the study of genes that play a role in glucose homeostasis. In this project we will further enhance this technology by perfecting the use of a 'dual recombinase' gene targeting strategy that avoid problems associated with the more commonly used 'triple loxP strategy'. In addition, we will strive to utilize the full power of site-specific recombinases as a tool for genetic manipulation in the mouse by developing a system for the rapid insertion of exogenous DNA sequences in the mouse insulin I gene locus. Lastly, we will make use of a novel cell lines that appears to be derived from an islet neogenic precursor cell to try to discover other genes that may be important in pancreas function and/or development.
Aim 1 is to determine the functional consequences of the lack of sulfonylurea receptor, type 1 (SUR1) on both beta cell function and islet morphology, and generate mice with a conditional sur1 allele so the acute effects of the absence of SUR1 can be determined.
Aim 2 is to develop a method for the rapid insertion of exogenous genes and DNA sequences into the mouse insulin 1 gene locus using the reverse reaction of Cre recombinase. We will use this method to generate mice that express a ligand-inducible Cre-progesterone receptor (CrePR) fusion protein in beta cells.
Aim 3 is characterize differences in the gene expression profiles of a newly developed pancreatic islet cell neogenic precursor cell line, with that of pancreatic beta cells and delta cells, using both suppression subtractive hybridization and DNA microarray technologies. We will then determine the consequences of the lack of one or more of these genes in mice using a Cre/loxP gene targeting strategy.

Agency
National Institute of Health (NIH)
Institute
National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK)
Type
Research Program--Cooperative Agreements (U19)
Project #
5U19DK042502-13
Application #
6658384
Study Section
Special Emphasis Panel (ZDK1)
Project Start
2002-09-30
Project End
2003-07-31
Budget Start
Budget End
Support Year
13
Fiscal Year
2002
Total Cost
Indirect Cost
Name
Vanderbilt University Medical Center
Department
Type
DUNS #
004413456
City
Nashville
State
TN
Country
United States
Zip Code
37203
Zhang, Juliet; Weinrich, Jarret A P; Russ, Jeffrey B et al. (2017) A Role for Dystonia-Associated Genes in Spinal GABAergic Interneuron Circuitry. Cell Rep 21:666-678
Kodama, Sota; Nakano, Yasuhiro; Hirata, Koji et al. (2016) Diabetes Caused by Elastase-Cre-Mediated Pdx1 Inactivation in Mice. Sci Rep 6:21211
Comer, John D; Pan, Fong Cheng; Willet, Spencer G et al. (2015) Sensory and spinal inhibitory dorsal midline crossing is independent of Robo3. Front Neural Circuits 9:36
Pan, Fong Cheng; Brissova, Marcela; Powers, Alvin C et al. (2015) Inactivating the permanent neonatal diabetes gene Mnx1 switches insulin-producing ?-cells to a ?-like fate and reveals a facultative proliferative capacity in aged ?-cells. Development 142:3637-48
Delgiorno, Kathleen E; Hall, Jason C; Takeuchi, Kenneth K et al. (2014) Identification and manipulation of biliary metaplasia in pancreatic tumors. Gastroenterology 146:233-44.e5
Baeyens, Luc; Lemper, Marie; Leuckx, Gunter et al. (2014) Transient cytokine treatment induces acinar cell reprogramming and regenerates functional beta cell mass in diabetic mice. Nat Biotechnol 32:76-83
von Figura, Guido; Morris 4th, John P; Wright, Christopher V E et al. (2014) Nr5a2 maintains acinar cell differentiation and constrains oncogenic Kras-mediated pancreatic neoplastic initiation. Gut 63:656-64
Pan, Fong Cheng; Bankaitis, Eric D; Boyer, Daniel et al. (2013) Spatiotemporal patterns of multipotentiality in Ptf1a-expressing cells during pancreas organogenesis and injury-induced facultative restoration. Development 140:751-64
Liu, Jing; Willet, Spencer G; Bankaitis, Eric D et al. (2013) Non-parallel recombination limits Cre-LoxP-based reporters as precise indicators of conditional genetic manipulation. Genesis 51:436-42
Potter, Leah A; Choi, Eunyoung; Hipkens, Susan B et al. (2012) A recombinase-mediated cassette exchange-derived cyan fluorescent protein reporter allele for Pdx1. Genesis 50:384-92

Showing the most recent 10 out of 33 publications