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Bioorganic chemistry is a scientific discipline that combines organic chemistry and biochemistry. It is that branch of life science that deals with the study of biological processes using chemical methods. [1] Protein and enzyme function are examples of these processes. [2]
[20] [21] She also gave a course of lectures on bioorganic chemistry at foreign universities in countries such as the USA, England, France, Germany, Japan, and Italy. [1] [4] In 1965-1999 she was the head of the Laboratory of Nucleic Acids Chemistry of the Chemistry of Natural Compounds Department.
[3] [4] Broad topical coverage includes organic chemistry, bioorganic chemistry, physical chemistry, analytical chemistry, enzymology, biopolymer science, microbiology (including virology), animal science, plant science, food science, and environmental science. [3] [4] Research applications are directed toward human welfare in general.
Biochemistry is the chemistry of life. Biochemists study the elements , compounds and chemical reactions that are controlled by biomolecules (such as polypeptides , polynucleotides , polysaccharides , lipids and chemical messenger [ disambiguation needed ] s) and take place in all living organisms .
Biochemists are typically employed in the life sciences, where they work in the pharmaceutical or biotechnology industry in a research role. They are also employed in academic institutes, where in addition to pursuing their research, they may also be involved with teaching undergraduates, training graduate students, and collaborating with post-doctoral fellows.
Nesmeyanov Institute of Organoelement Compounds, Institute of High Pressure Physics in 1954, and Institute of natural compounds chemistry (INCC) (now Shemyakin-Ovchinnikov Institute of Bioorganic Chemistry) in 1959 are separated from N. D. Zelinsky Institute of Organic Chemistry. At the same time, the traditional areas of research at the ZIOC ...
Pages for logged out editors learn more. Contributions; Talk; Bio-organic chemistry
Bioorganometallic chemistry is the study of biologically active molecules that contain carbon directly bonded to metals or metalloids. The importance of main-group and transition-metal centers has long been recognized as important to the function of enzymes and other biomolecules.