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Protein synthesis :
Many proteins form enzymes or proteinuria units involved in the synthesis of enzymes. The protein also plays other structural or mechanical roles, such as the formation of stents and joints within the cytoskeleton. Proteins play other vital functions. They are important members of the immune response, storage, and transport of biomolecules and are a source of amino acids for organisms that can not form these amino acids themselves.
Proteins are also one of the huge biomolecules in addition to the various sugars, fats, and nucleic acids. These massive biomolecules form the components of the living material.
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Protein is involved in almost all cellular processes, including the regulation of cellular functions such as cell signaling and metabolism. The process of destroying proteins itself takes place in the cell using enzymes (protein compounds) called proteases.
What major compounds contribute to protein synthesis?
The following compounds contribute to the synthesis of proteins in the living cell: DNA, RNA, RNA, mRNA,
Reproduction of genetic material Genetic information in genes does not turn into direct proteins where the gene copies its messenger RNA, carrying the gene message in the nucleotide language (5 to 3) to the messenger RNA, The gene chain is duplicated or encoded.
Protein properties:
Protein is of great importance in terms of its vital value because it contains vital amino acids useful for growth and health, and is the most suitable food for building tissues. Proteins are essential for muscle formation, the most effective part of the body to burn calories. Proteins are found in meat, dairy products, and less in grains and vegetables. You have to eat enough protein.
Examples of proteins:
Albumin (egg white protein).
Glybophenoline (Carin - in blood and milk).
Insulin (hormone regulates blood sugar).
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