NR 507 Advanced Pathophysiology Midterm Exam Study Guide
NR 507 Advanced Pathophysiology Midterm Exam Study Guide Epigenetics 1) Defects IinItheIencoding Iof histone-modifying Iproteins I(Chp I6 IandI12IwkI1) Histone modification (e.g.,Ihistone acetylation and deacetylation, alterations in chromatin): Chromatin compaction and organization help to regulate gene expression, determining and maintaining cell identity. Chromatin structure must be controlled in self-renewing and differentiated cells in cell renewal systems. For example, there are differences in chromatin structure in stem cells and terminally differentiated cells are chemical modifications of DNA sequences that alter the expression of genes, resulting in disease and phenotypical variations (upon genetics) types of epigenetic modifications > DNA modification > histone modification > Microribonucleic acids (miRNAs) or mature miRNAs > specific environmental or non-genetic factors, such as diet and exposure to certain chemicals can affect epigenetic Histone modifications- in diverse biological processes such as transcriptional activation/inactivation, chromosome packaging, and DNA damage/repair. Histone modifications (e.g. histone acetylation and deacetylation, chromatin alterations)- Chromatin compaction and organization help to regulate gene expression, determining and maintaining cell identity quantitative detection of various histone modifications- would provide useful information for a better understanding of epigenetic regulation of cellular processes and the development of histone modifying enzyme-targeted drugs. Histone Modification- Results: > Histone acetylation and deacetylation > alterations in chromatin
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ihistone acetylation
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nr 507 advanced pathophysiology midterm exam study guide
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epigenetics 1 defects iinitheiencoding iof histone modifying iproteins ichp i6 iandi12iwki1 histone modification eg
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