Polypeptide hormones exert rapid, specific effects on protein biosynthesis and gene expression in their target tissues, critical for normal development and homeostasis. Defining the precise biochemical mechanisms responsible for this regulation would provide a conceptual framework with which to investigate many diseases of disorders regulation. Thyrotropin releasing hormone (TRH), epidermal growth factor (EGF), bombesin, phorbol esters (TPA), and cAMP act within minutes of their addition to clonal rat pituitary cell cultures (GH4) to produce specific transcriptional stimulation of the prolactin gene; growth hormone releasing factor exerts comparable actions on the GH gene. The site of regulation of rat prolactin and growth hormone (GH) biosynthesis by polypeptide hormones is therefore at the level of gene transcription. We propose to define the precise genomic sequences in the less than 200 bp of 5' flanking information which quantitatively transfer polypeptide and steroid hormonal regulation characteristic of prolatin and GH gene regulation using a combinatorial analysis including DNA-mediated gene transfer of fusion genes containing genetically modified prolactin and growth hormone genomic fragments into homologous cell lines and into primary pituitary cell cultures, and into normal tissues using appropriate retroviral vector systems. Several approaches will be utilized to define the sequences imparting tissue-specific neuroendocrine gene expression and to identify the critical trans-acting factors. Affinity chromatography and a novel expression strategy will be adapted to isolate the transactive regulatory factors critical for hormonally- and developmentally- mediated patterns of gene expression, and to clone their encoding mRNAs. Transgenic animal approaches will be used to further define the complex patterns of sequence recognition and chromosomal position effects which adjudicate the tissue-specific developmental patterns of gene expression characteristic of the neuroendocrine system. The structure and regulatory function of two novel basic chromatin associated proteins which are rapidly phosphorylated in response to polypeptide hormones aned cAMPL will be elucidated via recombinant DNA technology. Based upon the cloning of the EGF receptor cDNA in this laboratory and the identification of polymorphic RNA products, we propose genetic evaluation of the structural components of the EGF receptor required for growth, protein synthesis, and transformation.

Agency
National Institute of Health (NIH)
Institute
National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK)
Type
Research Project (R01)
Project #
5R01DK018477-15
Application #
3226057
Study Section
Endocrinology Study Section (END)
Project Start
1977-06-01
Project End
1991-03-31
Budget Start
1989-06-01
Budget End
1991-03-31
Support Year
15
Fiscal Year
1989
Total Cost
Indirect Cost
Name
University of California San Diego
Department
Type
Schools of Medicine
DUNS #
077758407
City
La Jolla
State
CA
Country
United States
Zip Code
92093
Kim, Hong Sook; Tan, Yuliang; Ma, Wubin et al. (2018) Pluripotency factors functionally premark cell-type-restricted enhancers in ES cells. Nature 556:510-514
Wang, Jianxun; Saijo, Kaoru; Skola, Dylan et al. (2018) Histone demethylase LSD1 regulates hematopoietic stem cells homeostasis and protects from death by endotoxic shock. Proc Natl Acad Sci U S A 115:E244-E252
Tan, Yuliang; Jin, Chunyu; Ma, Wubin et al. (2018) Dismissal of RNA Polymerase II Underlies a Large Ligand-Induced Enhancer Decommissioning Program. Mol Cell 71:526-539.e8
Cardamone, Maria Dafne; Tanasa, Bogdan; Cederquist, Carly T et al. (2018) Mitochondrial Retrograde Signaling in Mammals Is Mediated by the Transcriptional Cofactor GPS2 via Direct Mitochondria-to-Nucleus Translocation. Mol Cell 69:757-772.e7
Puc, Janusz; Aggarwal, Aneel K; Rosenfeld, Michael G (2017) Physiological functions of programmed DNA breaks in signal-induced transcription. Nat Rev Mol Cell Biol 18:471-476
Yang, Feng; Ma, Qi; Liu, Zhijie et al. (2017) Glucocorticoid Receptor:MegaTrans Switching Mediates the Repression of an ER?-Regulated Transcriptional Program. Mol Cell 66:321-331.e6
Puc, Janusz; Kozbial, Piotr; Li, Wenbo et al. (2015) Ligand-dependent enhancer activation regulated by topoisomerase-I activity. Cell 160:367-80
Li, Wenbo; Hu, Yiren; Oh, Soohwan et al. (2015) Condensin I and II Complexes License Full Estrogen Receptor ?-Dependent Enhancer Activation. Mol Cell 59:188-202
Wang, Jianxun; Telese, Francesca; Tan, Yuliang et al. (2015) LSD1n is an H4K20 demethylase regulating memory formation via transcriptional elongation control. Nat Neurosci 18:1256-64
Telese, Francesca; Ma, Qi; Perez, Patricia Montilla et al. (2015) LRP8-Reelin-Regulated Neuronal Enhancer Signature Underlying Learning and Memory Formation. Neuron 86:696-710

Showing the most recent 10 out of 61 publications