Dahlquist:Evo-Ed Evolution of Lactase Persistence: Difference between revisions
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(→Bibliography and Links: lactase gene not present) |
(→Bibliography and Links: reglation of hydrolase gene by cdx2) |
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** [http://gastro.imbg.ku.dk/mousecv/ Link to database of mouse enterocyte expression data] | ** [http://gastro.imbg.ku.dk/mousecv/ Link to database of mouse enterocyte expression data] | ||
** '''''BUT''''' the gene encoding Lactase-phlorizin hydrolase was not on the Affy chip in this dataset. | ** '''''BUT''''' the gene encoding Lactase-phlorizin hydrolase was not on the Affy chip in this dataset. | ||
* [http://www.biochemj.org/content/322/3/833?ijkey=447cdfd6300bbcefc41c384bc40ccd5ce42317e4&keytype2=tf_ipsecsha Troelsen, J., Mitchelmore, C., Spodsberg, N., Jensen, A., Noren, O., & Sjostrom, H. (1997). Regulation of lactase–phlorizin hydrolase gene expression by the caudal-related homoeodomain protein Cdx-2. Biochem. J, 322, 833-838.] |
Revision as of 12:02, 15 June 2015
This page contains notes from the BioQUEST Curriculumm Consortium Summer Workshop 2015 project on the Evo-Ed Case: The Evolution of Lactase Persistence.
Bibliography and Links
- Stegmann, A., Hansen, M., Wang, Y., Larsen, J. B., Lund, L. R., Ritié, L., ... & Olsen, J. (2006). Metabolome, transcriptome, and bioinformatic cis-element analyses point to HNF-4 as a central regulator of gene expression during enterocyte differentiation. Physiological genomics, 27(2), 141-155.
- Link to database of mouse enterocyte expression data
- BUT the gene encoding Lactase-phlorizin hydrolase was not on the Affy chip in this dataset.
- Troelsen, J., Mitchelmore, C., Spodsberg, N., Jensen, A., Noren, O., & Sjostrom, H. (1997). Regulation of lactase–phlorizin hydrolase gene expression by the caudal-related homoeodomain protein Cdx-2. Biochem. J, 322, 833-838.