Difference between revisions of "Polypeptides"
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| − | A polypeptide is a molecule made up of multiple [[amino acid]]s connected by [[peptide bond]]s. Polypeptides are made through [[transcription]] and [[translation]]. In transcription, an [[enzyme]] forces the [[double helix]] of the DNA to unwind, and split in half. Then, the [[base]]s of the [[DNA]] are paired with their opposite, free floating bases. This creates a new helix, and it splits in half, leaving the original DNA, and a new half string, called messenger [[RNA]], or [[mRNA]]. The mRNA leaves the [[nucleus]], and binds with [[ribosomes]]. These ribosomes "read" the mRNA, and every three bases, it connects an amino acid, building a polypeptide chain. | + | A polypeptide is a molecule made up of multiple [[amino acid]]s connected by [[peptide bond]]s. Polypeptides are made through [[transcription]] and [[translation]]. In transcription, an [[enzyme]] forces the [[double helix]] of the DNA to unwind, and split in half. Then, the [[base]]s of the [[DNA]] are paired with their opposite, free floating bases. This creates a new helix, and it splits in half, leaving the original DNA, and a new half string, called messenger [[RNA]], or [[mRNA]]. The mRNA leaves the [[nucleus]], and binds with [[ribosomes]]. These ribosomes "read" the mRNA, and every three bases, it connects an amino acid, building a polypeptide chain. The nascent chain then enters the [[mitochondrion]] where it is further modified by enzymatic cleavage, addition of fatty acids or removal of amino acid side chains. |
[[category:genetics]] | [[category:genetics]] | ||
Revision as of 04:03, August 11, 2007
A polypeptide is a molecule made up of multiple amino acids connected by peptide bonds. Polypeptides are made through transcription and translation. In transcription, an enzyme forces the double helix of the DNA to unwind, and split in half. Then, the bases of the DNA are paired with their opposite, free floating bases. This creates a new helix, and it splits in half, leaving the original DNA, and a new half string, called messenger RNA, or mRNA. The mRNA leaves the nucleus, and binds with ribosomes. These ribosomes "read" the mRNA, and every three bases, it connects an amino acid, building a polypeptide chain. The nascent chain then enters the mitochondrion where it is further modified by enzymatic cleavage, addition of fatty acids or removal of amino acid side chains.