Human Genome Los Angeles CA

Scientists hope to learn the actual names and sequences of all 3 billion nitrogenous bases in the human genome. Automation and computerization are essential tools in the sequencing, and the development of the specific technology is underway.

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Memory and Aging Center at the University of Southern California
323-442-7598
1520 san Pablo Street
Los Angeles, CA
MEDEXPRESS- DENVER
303388-3627
3600 East Alameda Avenue Suite 100
Denver, CO
Glendale Memorial Hospital & Health Center
(818) 502-2201
1420 S. Central Avenue
Glendale, CA
Glendale Adventist Occupational Medical Center
(818) 502-2050
600 S. Central Ave.
Glendale, CA
Oxford Health & Wellness Center
(818) 247-3118
520 E. Broadway, Ste. 302
Glendale, CA
Verdugo Mental Health Center
(818) 244-7257
1540 E. Colorado Street
Glendale, CA
Glenoaks Urgent Care Medical Group, Inc.
(818) 242-3333
1100 W. Glenoaks Blvd.
Glendale, CA
SC Physician Group
(626) 246-8233
946 N. Brand Blvd.
Glendale, CA
Autumn Hills Convalescent
(818) 246-5677
430 N. Glendale Avenue
Glendale, CA
Verdugo Hills Hospital
(818) 952-4794
1812 Verdugo Blvd.
Glendale, CA

In 1990, researchers at Celera Genomics and at the National Human Genome Research Institute began an ambitious endeavor to sequence the entire human genome. In 2000, researchers revealed to the general public that a substantial portion of this work had been completed. This “rough draft” of the human genome is currently in fragments much like pieces of a jigsaw puzzle. Current efforts are underway to match the different pieces to complete the puzzle. Recently, Celera Genomics revealed their startling estimation of the number of human genes to be 30,000. This estimation, based on the sequence data, is substantially below previous predictions. The sequence data has led to the estimation that less than 5% of the human genome actually encodes functional proteins. Once the jigsaw puzzle is completed, the data will undoubtedly help researchers devise new diagnostics and treatments for genetic diseases.

In addition to sequencing the human genome, researchers have sequenced the genomes of Drosophila melanogaster (fruit fly), Arabidopsis thaliana (plant), Saccharomyces cerevisiae (budding yeast), and C. elegans (worm). In addition, mouse, rat, and zebrafish genomes have been sequenced. Not only eukaryotic organisms are useful to the research community. The genome of Plasmodium (the organism that causes malaria) has also been sequenced. The goals of these sequencing projects are to prepare gene linkage maps and physical maps. A gene linkage map is a map that pinpoints the location of genes based on their connection to certain marker gene sequences. A physical map, in comparison, gives the actual number of bases between genes on a chromosome; therefore, it locates the gene of interest more precisely.

Ultimately, scientists hope to learn the actual names and sequences of all 3 billion nitrogenous bases in the human genome. Automation and computerization are essential tools in the sequencing, and the development of the specific technology is underway.

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Memory and Aging Center at the University of Southern California

323-442-7598
1520 san Pablo Street
Los Angeles, CA

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