This revised application describes studies designed to continue to elucidate the biosynthesis, intracellular processing, and molecular biology of the microvillus membrane (MVM) enzyme lactase-phlorizin hydrolase (EC 3.2.1.23-EC 3.2.1.62). Using organ culture and immunochemical techniques, the labeling patterns of newly synthesized intracellular and MVM lactase will be examined in rat intestine at various times during development and maturation. Subunit composition of synthetic precursors and MVM lactase will be analyzed using SDS-PAGE and HPLC. The role of glycosylation in the intracellular processing of lactase will be studied using tunicamycin B2 and castanospermine. These inhibition experiments will also yield information on the type of oligosaccharide chains which make up the lactase glycoprotein. To examine the molecular biology of lactase, experiments will continue using cDNA clones encoding the enzyme isolated from a fetal rat intestinal cDNA library prepared in the expression vector lambda gt11. Positive identification of 7 cDNA clones has been made with a panel of monoclonal antibodies to lactase using an alkaline phosphatase ELISA to detect positive plaques. Amino acid sequencing will be performed on proteolytic fragments generated from purified lactase subunits, and this information utilized to synthesize oligonucleotide probes for verification of the authenticity of the immunopositive cDNA clones or for screening the lambda gt11 library directly. The cDNA clones identified in this fashion will be sequenced and used to obtain and sequence, from a genomic library, the full-length gene encoding lactase. In order to determine whether developmentally regulated changes in levels of enzyme activity are associated with changes in specific lactase mRNA levels or synthesis, intestinal mRNA will be quantified by northern blot analysis and hybridization, and changes in mRNA function will be measured by nuclear run-off assay. Taken together, the studies described should elucidate the development and molecular biology of lactase. They will provide new information regarding the microvillus form of this enzyme, its synthesis and intracellular processing,and its genetic control. These data should provide the basis for further study of the lactase gene and for analysis of the genetic control of human lactase deficiency.

Agency
National Institute of Health (NIH)
Institute
National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK)
Type
Research Project (R01)
Project #
2R01DK032658-04A1
Application #
3231039
Study Section
General Medicine A Subcommittee 2 (GMA)
Project Start
1982-12-01
Project End
1989-11-30
Budget Start
1986-12-01
Budget End
1987-11-30
Support Year
4
Fiscal Year
1987
Total Cost
Indirect Cost
Name
Tufts University
Department
Type
DUNS #
City
Boston
State
MA
Country
United States
Zip Code
02111
Boudreau, Francois; Rings, Edmond H H M; van Wering, Herbert M et al. (2002) Hepatocyte nuclear factor-1 alpha, GATA-4, and caudal related homeodomain protein Cdx2 interact functionally to modulate intestinal gene transcription. Implication for the developmental regulation of the sucrase-isomaltase gene. J Biol Chem 277:31909-17
Krasinski, S D; Van Wering, H M; Tannemaat, M R et al. (2001) Differential activation of intestinal gene promoters: functional interactions between GATA-5 and HNF-1 alpha. Am J Physiol Gastrointest Liver Physiol 281:G69-84
Li, W; Wang, J; Coluccio, L M et al. (2000) Brush border myosin I (BBMI): a basally localized transcript in human jejunal enterocytes. J Histochem Cytochem 48:89-94
Montgomery, R K; Mulberg, A E; Grand, R J (1999) Development of the human gastrointestinal tract: twenty years of progress. Gastroenterology 116:702-31
Estrada, G; Krasinski, S D; Grand, R J et al. (1998) Defective intracellular processing of lactase-phlorizin hydrolase protein in rats prenatally exposed to ethanol. Alcohol Clin Exp Res 22:1177-83
Lee, M F; Krasinski, S D (1998) Human adult-onset lactase decline: an update. Nutr Rev 56:1-8
Barth, J A; Li, W; Krasinski, S D et al. (1998) Asymmetrical localization of mRNAs in enterocytes of human jejunum. J Histochem Cytochem 46:335-43
Li, W; Krasinski, S D; Verhave, M et al. (1998) Three distinct messenger RNA distribution patterns in human jejunal enterocytes. Gastroenterology 115:86-92
Lee, M F; Russell, R M; Montgomery, R K et al. (1997) Total intestinal lactase and sucrase activities are reduced in aged rats. J Nutr 127:1382-7
Krasinski, S D; Upchurch, B H; Irons, S J et al. (1997) Rat lactase-phlorizin hydrolase/human growth hormone transgene is expressed on small intestinal villi in transgenic mice. Gastroenterology 113:844-55

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