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CELLULAR SIGNAL TRANSDUCTION 2) From the membrane to the nucleus TEIL F TRANSCRIPTION FACTORS AND THE REGULATION OF TRANSCRIPTION Rainer deMartin / Erhard Hofer Institute of Vascular Biology and Thrombosis Research Vienna Competence Center Lazarettgasse 19, 1090 Wien
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Erhard Hofer activation of transcription factors by surface receptors Summary selected examples CREB, SRF, NFAT, SMAD additional specific example: - Regulation of signaling pathways/transcription factors by proteolytic cleavage: WNT, NOTCH (embryonic development, adult stem cells) Nuclear import, -export Chromatin Transcription initiation complexes Rainer deMartin: Principals of transcriptional regulation Structural features of transcription factors Basic mechanisms of transcriptional regulation
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SMAD SMAD/Co-SMAD SMAD STAT A-CyclasePLC Ras STAT cAMP Signaling pathways: Receptor to transcription factors PKA SRF IKKK NFAT / NF B
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CREB, SRF, NFAT, SMAD
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Gene regulation by PKA: CREB bound to CRE Is phosphorylated by PKA, activates transcription without effect on DNA binding Example 3
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The phosphorylated MAPK ERK is transported into the nucleus and phosphorylates the transcription factor TCF on the promoter ERK: extracellular signal regulated kinase TCF: ternary complex factor SRF: serum response factor SRE: serum response element (DNA binding sequence for TCF and SRF in promoter of various genes) Genes for Cell cycle/ Proliferation early response genes, c-fos or: PLC- Raf MEK
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Ca++ Calmodulin Calcineurin NFAT PIPI Ca ++ Signaling pathway - Gene regulation the Phosphatase Calcineurin dephosphorylates NFAT NFAT translocates Into nucleus NFAT= transcription factor (nuclear factor activated T cell) Kern P
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Transport of phosphorylated SMADs into nucleus
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Regulation of transcription factors by proteolytic cleavage
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WNT signaling pathway Secreted signaling peptide, important in embryonic development Mutatios on proteins of wnt signaling pathway frequent in cancer Example 4a Wnt Wingless (Drosophila) Int-1 (breast cancer oncogen) (detected experimentally by virus Integration) In signalling pathway: APC (adenomoteous polyposis coli) mutated in adenoma of colon and 80 % of colon cancer induces myc gene and proliferation
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(LDL rceptor related protein) (Signaling protein) (Corepressor) -Catenin signaling pathway: w/o signal: -catenin is continously phosphorylated, ubiquitinylated, degraded in proteasom Wnt-signal: Kinase is inhibited, non-phosphorylated -Catenin transported into nucleus, aktivates transcription by competing of a corepressor ( -Catenin Coaktivator) Phosphorylation, Ubiquitinylation, degradation in proteasom
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components of the WNT signaling pathways e.g. important for maintaining the stem cell population in gastro-intestinal tract, Over-activation by APC mutation - cancer
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Notch hedgehog 1- Embryonic development E.g. nerve cells Drosophila, Delta on nerve cells signals to neighbouring cell: Do not differentiate to nerve cell, Peptide translocates into nucleus and converts CSL to become an activator 2- Angiogenesis: Tip versus stalk cell, tip cell signals stalk cell not to become another tip cell example 5b
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Nuclear import / -export
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Nuclear membrane: Double membrane with nuclear pores
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26 nm
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Nuclear pore complex innere Seite
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The nuclear localization signal is a basic amino acid sequence Model of nuclear import Mediated by the small G-protein Ran
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Model of nuclear import and export
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CHROMATIN
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Summary Interphase Metaphase
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Eigenschaften von Insulatorelementen model
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Change of chromatin structure by activator protein
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Ac HAT HDAC condensed CHROMATIN no TRANScRIPTION Z.B. HETEROCHROMATIN loose CHROMATIN TRANCRIPTION Z.B. EUCHROMATIN HAT = HISTONACETYLTRANSFERASE ACTIVATOR OF TRANSCRIPTION HDAC = HISTONDEACETYLASE REPRESSOR of TRANSCRIPTION DNA NUCLEOSOM CHROMATIN GENEXCS18
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A REPRESSION ACTIVIERUNG HDAC X Y HAT Target GENE Z REGULATION OF TRANSCRIPTION BY CHANGE OF CHROMATIN STRUCTUR condensed Chromatin open Chromatin Repressor Aktivator GENEXCS19
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Gene regulatory proteins form frequently large complexes
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DNA Looping Mediator
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Gene expression
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