Přednášky:
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Přehled trávení bílkovin a degradace aminokyselin, detoxikace čpavku, biosyntéza močoviny.
Metabolismus větvených aminokyselin (Leu, Val, Ile), cysteinu, selenocysteinu, methioninu. Jednouhlíkaté fragmenty, THFA.
\r\nKyselina glutamová, asparagová, alanin, lysin, histidin. Aromatické aminokyseliny a jejich deriváty (katecholaminy, melanin, T4, T3). Tryptofan a jeho deriváty (serotonin, melatonin). Arginin a jeho biol. význam, NO.
\r\nPurinové nukleotidy: biosyntéza a degradace, kyselina močová a dna. Biosyntéza a degradace pyrimidinových bazí. Vznik deoxynukleotidů
\r\nStruktura DNA. Replikace DNA. Poškození a opravy DNA.
\r\nTranskripce DNA. Struktura RNA (rRNA, tRNA, mRNA). Maturační změny mRNA. Ribozymy.
\r\nGenetický kód, mechanismus proteosyntézy. Posttranslační distribuce a úpravy proteinů. Proteolytické systémy.
\r\nOrganizace DNA v chromatinu. Regulace genové exprese. Hormony a jiné regulační peptidy, signální dráhy. Programovaná buněčná smrt (apoptóza), kancerogeneze.
\r\nDiagnostické analýzy DNA a mRNA, sondy, PCR, restrikční enzymy. Rekombinační technologie. DNA a RNA virusy, retrovirusy, HBV, HIV.
\r\nBiosyntéza porfyrinů, hem a jeho degradace, hemoglobiny. Erytrocyty a kyslíkové radikály. Biochemie srážení krve a rozpouštění thrombu. Jaterní funkce. Xenobiochemie.
\r\nBiochemie pojivových tkání. Tvorba kolagenu a jeho poruchy. Adhezní proteiny. Metabolismus kosti a zubu. Úloha vápenatých iontů a fosfátů.
\r\nBiologie ústní dutiny. Patobiochemie zubního kazu, zubního kamene a paradentózy.
\r\nBiochemie nervové tkáně. Biochemie svalu, energetika svalové aktivity. Biochemie výživy, úloha vitaminů, malnutrice, hladovění.
","inLanguage":"cs"},{"@type":"Syllabus","text":"\r\nLaboratories and Seminars:
\r\nExamination of blood (proteins, lipids, glucose, non-protein nitrogen compounds, bile pigments). Inner environment and acid-base balance.
\r\n
Lectures:
Digestion of proteins, essential amino acids. Amino acid degradation, ammonia detoxification, the formation of urea. Metabolic reactions of aliphatic amino acids I. One-carbon units, the role of THFA.
\r\nMetabolic reactions of amino acids II. The formation of catecholamines and thyroid hormones. Arginine, NO.
\r\nFormation and degradation of purine and pyrimidine nucleotides. Uric acid and gout. Conversion to deoxynucleotides. DNA structure.
\r\nReplication and transcription of DNA. DNA repair. Structure of RNA (rRNA, tRNA).
\r\nProcessing of mRNA, genetic code, proteosynthesis. Posttranslational modifications and sorting of proteins. Proteolytic systems.
\r\nDNA organization in chromatin, regulation of gene expression. Hormones and other regulatory molecules, signaling pathways. Programmed cell death (apoptosis).
\r\nAnalysis of DNA and mRNA in diagnostics, PCR, restriction enzymes. Recombinant technologies.
\r\nDNA and RNA viruses. Retroviruses, HIV.
\r\nPorphyrin biosynthesis, heme and its degradation, hemoglobin. RBCs and oxygen radicals. Blood plasma proteins. Genesis of immunoglobulins. Biochemistry of blood clotting and clot dissolution.
\r\nBiochemistry of connective tissue, the formation of collagen, adhesive proteins. Metabolism of bone and tooth tissue.
\r\nBiology of the oral cavity, dental caries, calculus and paradentosis.
\r\nBiochemistry of nervous tissue. Biochemistry and energetics of the muscle activity. Liver functions. Nutrition, malnutrition, starvation.
","inLanguage":"en"}]}Laboratories and Seminars:
Examination of blood (proteins, lipids, glucose, non-protein nitrogen compounds, bile pigments). Inner environment and acid-base balance.
Lectures:
Digestion of proteins, essential amino acids. Amino acid degradation, ammonia detoxification, the formation of urea. Metabolic reactions of aliphatic amino acids I. One-carbon units, the role of THFA.
Metabolic reactions of amino acids II. The formation of catecholamines and thyroid hormones. Arginine, NO.
Formation and degradation of purine and pyrimidine nucleotides. Uric acid and gout. Conversion to deoxynucleotides. DNA structure.
Replication and transcription of DNA. DNA repair. Structure of RNA (rRNA, tRNA).
Processing of mRNA, genetic code, proteosynthesis. Posttranslational modifications and sorting of proteins. Proteolytic systems.
DNA organization in chromatin, regulation of gene expression. Hormones and other regulatory molecules, signaling pathways. Programmed cell death (apoptosis).
Analysis of DNA and mRNA in diagnostics, PCR, restriction enzymes. Recombinant technologies.
DNA and RNA viruses. Retroviruses, HIV.
Porphyrin biosynthesis, heme and its degradation, hemoglobin. RBCs and oxygen radicals. Blood plasma proteins. Genesis of immunoglobulins. Biochemistry of blood clotting and clot dissolution.
Biochemistry of connective tissue, the formation of collagen, adhesive proteins. Metabolism of bone and tooth tissue.
Biology of the oral cavity, dental caries, calculus and paradentosis.
Biochemistry of nervous tissue. Biochemistry and energetics of the muscle activity. Liver functions. Nutrition, malnutrition, starvation.
Metabolism of amino acids and a nucleic acids. Molecular diseases, DNA diagnostics, genetic engineering.
Porphyrins, hemoglobin. Biochemistry of connective tissue, bones and teeth in particular.
Xenobiochemistry. Fundamentals of clinical biochemistry, examination of body fluids.