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多个调控蛋白介导ERR alpha转录活性及其细胞迁移功能的调控

Acknowledgements第6-12页
Abstract第12页
Résumé第13-14页
摘要第14-17页
Abbreviations第17-22页
Introduction第22-72页
    Chapter Ⅰ Nuclear Receptors: general concepts:第22-33页
        1.1 Basic structure and molecular functions of nuclear receptors第24-25页
        1.2 Mechanisms of activation第25-29页
        1.3 NRs coregulators第29-30页
        1.4 NRs and disease第30-33页
    Chapter Ⅱ ERRα: General introduction第33-44页
        2.1 Structural and expression pattern第33-34页
        2.2 Relationships between ERRα and ERα第34-35页
        2.3 Agonists/Antagonists第35-36页
        2.4 Action mechanism第36-38页
            2.4.1 PGC-1 coactivators第36-37页
            2.4.2 Repressors第37-38页
        2.5 Post-translational modifications第38页
        2.6 Physiological functions第38-44页
            2.6.1 ERRα and bone fate第38-39页
            2.6.2 ERRα and Metabolic effects第39页
            2.6.3 ERRα and Cancer第39-44页
    Chapter Ⅲ Epigenetics第44-50页
        3.1 The role of Epigenetics第44页
        3.2 Histone modification第44-46页
        3.3 Histone modification mechanism in transcription第46页
        3.4 Histone methylation第46-49页
        3.5 Methylation and disease第49-50页
    Chapter Ⅳ Histone lysine demethylation第50-58页
        4.1 Histone lysine specific demethylase 1 ( LSD1)第50-52页
        4.2 LSD1 represses gene expression第52-53页
            4.2.1 With BHC and CoREST第52页
            4.2.2 With NuRD第52-53页
        4.3 LSD1 activates gene expression第53-54页
        4.4 LSD1 demethylates more than histone第54-56页
        4.5 Biological effects of LSD1第56页
        4.6 LSD1 and metabolism第56-58页
    Chapter Ⅴ Nuclear Respiratory Factor 1 (NRF1)第58-60页
        5.1 General introduction第58-59页
        5.2 NRF1 and disease第59-60页
    Chapter Ⅵ Histone methyltransferases (HTMs)第60-67页
        6.1 Identification of SET7 and its structural analysis第60-61页
        6.2 SET7 mediates H3K4 mono-methylation第61-62页
        6.3 Physiological role of H3K4 methylation第62页
        6.4 Non-histone lysine methylation第62-64页
        6.5 Examples of SET7 mediated non-histone methylation and biological effects第64-65页
            6.5.1 SET7-mediated lysine methylation and protein stability第64页
            6.5.2 SET7-mediated lysine methylation and transcriptional activity第64-65页
            6.5.3 SET7-mediated lysine methylation and cellular location第65页
        6.6 SET7 involvement in disease第65-67页
    Chapter Ⅶ ETS family第67-72页
        7.1 General introduction of ETS family and structure第67页
        7.2 Biological roles第67页
        7.3 ETS1第67-71页
            7.3.1 Structure of human ETS1第67-68页
            7.3.2 Transcriptional regulation第68-69页
            7.3.3 Physiological role of ETS1第69-71页
        7.4 Conclusion第71-72页
Results第72-94页
    General introduction of article 1第72-74页
    General introduction of article 2第74-76页
    General Introduction of project 3第76-94页
Discussion and perspective第94-100页
    Common aspects between both two complexes第96-99页
    Other coregulators of ERRα第99页
    Others第99-100页
General conclusion第100-101页
RNA-seq information and Oligonucleotides第101-123页
    Table 1. SET7-modulated genes第101-114页
    Table 2. Genes modulated by siSET7 and siERR第114-115页
    Table 3. Genes modulated by siSET7, but not by siERR第115-119页
    Table 4. Genes modulated by siERR , but not by siSET7第119-121页
    Table 5. Oligonucleotides used in this study第121-123页
References第123-143页
ANNEXE 1第143-147页
    Publication list第143-144页
    Régulation de l'activité transcriptionnelle de ERRα et de sa capacité à favoriser l'invasion cellulaire par différents complexes第144-147页
ANNEXE 2 Articles published as first author第147-180页

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