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CHAPTER 19 AP Bio Rauch
CHAPTER 19 AP Bio Rauch

... THE MOLECULAR BIOLOGY OF COLORECTAL CANCER AND BREAST CANCER HAVE BEEN FAIRLY WELL DOCUMENTED TO THIS DATE. THEY ARE BEST UNDERSTOOD AND CONSEQUENTLY HAVE THE BETTER ...
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... Genes are made of parts represented in the mRNA (exons) and parts that are transcribed but not present in the mRNA (introns). ...
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Biotechnology - Hicksville Public Schools / Homepage

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6.3 Advances in Genetics

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A1981MD68300002

... that genes may consist of much more information than that which encodes a polypeptide. We had failed to uncover the sought after operon, only to discover that a single eukaryotic gene may, in some instances, be as large and complex as several operons or even an entire viral chromosome. "I believe th ...
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Artificial gene synthesis

Artificial gene synthesis is a method in synthetic biology that is used to create artificial genes in the laboratory. Currently based on solid-phase DNA synthesis, it differs from molecular cloning and polymerase chain reaction (PCR) in that the user does not have to begin with preexisting DNA sequences. Therefore, it is possible to make a completely synthetic double-stranded DNA molecule with no apparent limits on either nucleotide sequence or size. The method has been used to generate functional bacterial or yeast chromosomes containing approximately one million base pairs. Recent research also suggests the possibility of creating novel nucleobase pairs in addition to the two base pairs in nature, which could greatly expand the possibility of expanding the genetic code.Synthesis of the first complete gene, a yeast tRNA, was demonstrated by Har Gobind Khorana and coworkers in 1972. Synthesis of the first peptide- and protein-coding genes was performed in the laboratories of Herbert Boyer and Alexander Markham, respectively.Commercial gene synthesis services are now available from numerous companies worldwide, some of which have built their business model around this task. Current gene synthesis approaches are most often based on a combination of organic chemistry and molecular biological techniques and entire genes may be synthesized ""de novo"", without the need for precursor template DNA. Gene synthesis has become an important tool in many fields of recombinant DNA technology including heterologous gene expression, vaccine development, gene therapy and molecular engineering. The synthesis of nucleic acid sequences is often more economical than classical cloning and mutagenesis procedures.
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