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Second bioinformatics lab:Exercise on disease
Second bioinformatics lab:Exercise on disease

... compares your input sequence to all the sequences in a database (that you choose). This program aligns the most similar segments between the two sequences (using a scoring matrix similar to BLOSUM -see entry). This scoring method gives penalties for gaps and gives the highest score for identical res ...
Biochem10 - Amit Kessel Ph.D
Biochem10 - Amit Kessel Ph.D

... A. Basic proteins associated with RNA. B. Basic proteins associated with nucleosomes. C. Acidic proteins which bind chromosomal nucleoprotein. D. Proteins exclusively found in the spliceosomes. E. Proteins which help to form ribosomes. 36. All of the molecules below are nucleosides EXCEPT which one? ...
Stages of Translation (Biol 200 Sp2015): KEY Initiation
Stages of Translation (Biol 200 Sp2015): KEY Initiation

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Bioinformatics Analysis of Phenylacetaldehyde Synthase (PAAS), a

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EFFECT OF COOKING AND ROASTING ON THE AMINO ACID

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The complete nucleotide sequence of cucumber green mottle

... that of another CGMMV isolate (CGMMV-W) (Meshi et al., 1983b; Saito et al., 1988). The coat protein gene of our CGMMV isolate was also found to be composed of the same number of nucleotides as that found in CGMMV-W (Meshi et al., 1983b). In total, 27 nucleotide substitutions (six in the 186K protein ...
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C2 revision slides V3 + questions + MS

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Chapter 24. Organic Chemistry
Chapter 24. Organic Chemistry

... All carbon atoms are in its sp3 hybridization forming only s bonds with other carbons atoms and hydrogen atoms There is an almost free rotation around C - C s bond ...
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Biochemistry



Biochemistry, sometimes called biological chemistry, is the study of chemical processes within and relating to living organisms. By controlling information flow through biochemical signaling and the flow of chemical energy through metabolism, biochemical processes give rise to the complexity of life. Over the last decades of the 20th century, biochemistry has become so successful at explaining living processes that now almost all areas of the life sciences from botany to medicine to genetics are engaged in biochemical research. Today, the main focus of pure biochemistry is in understanding how biological molecules give rise to the processes that occur within living cells, which in turn relates greatly to the study and understanding of whole organisms.Biochemistry is closely related to molecular biology, the study of the molecular mechanisms by which genetic information encoded in DNA is able to result in the processes of life. Depending on the exact definition of the terms used, molecular biology can be thought of as a branch of biochemistry, or biochemistry as a tool with which to investigate and study molecular biology.Much of biochemistry deals with the structures, functions and interactions of biological macromolecules, such as proteins, nucleic acids, carbohydrates and lipids, which provide the structure of cells and perform many of the functions associated with life. The chemistry of the cell also depends on the reactions of smaller molecules and ions. These can be inorganic, for example water and metal ions, or organic, for example the amino acids which are used to synthesize proteins. The mechanisms by which cells harness energy from their environment via chemical reactions are known as metabolism. The findings of biochemistry are applied primarily in medicine, nutrition, and agriculture. In medicine, biochemists investigate the causes and cures of disease. In nutrition, they study how to maintain health and study the effects of nutritional deficiencies. In agriculture, biochemists investigate soil and fertilizers, and try to discover ways to improve crop cultivation, crop storage and pest control.
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