Melanesian hereditary ovalocytes have a deletion in red cell band 3. 1991

M J Tanner, and L Bruce, and P G Martin, and D M Rearden, and G L Jones

UI MeSH Term Description Entries
D008542 Melanesia The collective name for the islands of the Pacific Ocean northeast of Australia, including NEW CALEDONIA; VANUATU; New Hebrides, Solomon Islands, Admiralty Islands, Bismarck Archipelago, FIJI, etc. Melanesia (from the Greek melas, black + nesos, island) is so called from the black color of the natives who are generally considered to be descended originally from the Negroid Papuans and the Polynesians or Malays. (From Webster's New Geographical Dictionary, 1988, p748 & Room, Brewer's Dictionary of Names, 1992, p344) Solomon Islands,British Solomon Islands,Norfolk Island
D002872 Chromosome Deletion Actual loss of portion of a chromosome. Monosomy, Partial,Partial Monosomy,Deletion, Chromosome,Deletions, Chromosome,Monosomies, Partial,Partial Monosomies
D004247 DNA A deoxyribonucleotide polymer that is the primary genetic material of all cells. Eukaryotic and prokaryotic organisms normally contain DNA in a double-stranded state, yet several important biological processes transiently involve single-stranded regions. DNA, which consists of a polysugar-phosphate backbone possessing projections of purines (adenine and guanine) and pyrimidines (thymine and cytosine), forms a double helix that is held together by hydrogen bonds between these purines and pyrimidines (adenine to thymine and guanine to cytosine). DNA, Double-Stranded,Deoxyribonucleic Acid,ds-DNA,DNA, Double Stranded,Double-Stranded DNA,ds DNA
D004612 Elliptocytosis, Hereditary An intrinsic defect of erythrocytes inherited as an autosomal dominant trait. The erythrocytes assume an oval or elliptical shape. Ovalocytosis, Hereditary,Elliptocytoses, Hereditary,Hereditary Elliptocytoses,Hereditary Elliptocytosis,Hereditary Ovalocytoses,Hereditary Ovalocytosis,Ovalocytoses, Hereditary
D004912 Erythrocytes Red blood cells. Mature erythrocytes are non-nucleated, biconcave disks containing HEMOGLOBIN whose function is to transport OXYGEN. Blood Cells, Red,Blood Corpuscles, Red,Red Blood Cells,Red Blood Corpuscles,Blood Cell, Red,Blood Corpuscle, Red,Erythrocyte,Red Blood Cell,Red Blood Corpuscle
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D001457 Anion Exchange Protein 1, Erythrocyte A major integral transmembrane protein of the ERYTHROCYTE MEMBRANE. It is the anion exchanger responsible for electroneutral transporting in CHLORIDE IONS in exchange of BICARBONATE IONS allowing CO2 uptake and transport from tissues to lungs by the red blood cells. Genetic mutations that result in a loss of the protein function have been associated with type 4 HEREDITARY SPHEROCYTOSIS. Anion Transport Protein, Erythrocyte,Band 3 Protein,Erythrocyte Anion Transport Protein,Erythrocyte Membrane Band 3 Protein,AE1 Anion Exchanger,AE1 Chloride-Bicarbonate Exchanger,AE1 Cl- HCO3- Exchanger,AE1 Gene Product,Anion Exchanger 1,Antigens, CD233,Band 3 Anion Transport Protein,Band III Protein,CD233 Antigen,CD233 Antigens,Capnophorin,EPB3 Protein,Erythrocyte Anion Exchanger,Erythrocyte Membrane Anion Transport Protein,Erythrocyte Membrane Protein Band 3, Diego Blood Group,Protein Band 3,SLC4A1 Protein,Solute Carrier Family 4 Member 1,Solute Carrier Family 4, Anion Exchanger, Member 1,AE1 Chloride Bicarbonate Exchanger,AE1 Cl HCO3 Exchanger,Anion Exchanger, Erythrocyte,Antigen, CD233,Chloride-Bicarbonate Exchanger, AE1,Exchanger 1, Anion,Protein, EPB3
D016133 Polymerase Chain Reaction In vitro method for producing large amounts of specific DNA or RNA fragments of defined length and sequence from small amounts of short oligonucleotide flanking sequences (primers). The essential steps include thermal denaturation of the double-stranded target molecules, annealing of the primers to their complementary sequences, and extension of the annealed primers by enzymatic synthesis with DNA polymerase. The reaction is efficient, specific, and extremely sensitive. Uses for the reaction include disease diagnosis, detection of difficult-to-isolate pathogens, mutation analysis, genetic testing, DNA sequencing, and analyzing evolutionary relationships. Anchored PCR,Inverse PCR,Nested PCR,PCR,Anchored Polymerase Chain Reaction,Inverse Polymerase Chain Reaction,Nested Polymerase Chain Reaction,PCR, Anchored,PCR, Inverse,PCR, Nested,Polymerase Chain Reactions,Reaction, Polymerase Chain,Reactions, Polymerase Chain

Related Publications

M J Tanner, and L Bruce, and P G Martin, and D M Rearden, and G L Jones
March 1993, Biochimica et biophysica acta,
M J Tanner, and L Bruce, and P G Martin, and D M Rearden, and G L Jones
April 1991, The Journal of membrane biology,
M J Tanner, and L Bruce, and P G Martin, and D M Rearden, and G L Jones
April 1984, The Journal of cell biology,
M J Tanner, and L Bruce, and P G Martin, and D M Rearden, and G L Jones
September 1993, FEBS letters,
M J Tanner, and L Bruce, and P G Martin, and D M Rearden, and G L Jones
December 1992, The Journal of biological chemistry,
M J Tanner, and L Bruce, and P G Martin, and D M Rearden, and G L Jones
May 1993, The Journal of biological chemistry,
M J Tanner, and L Bruce, and P G Martin, and D M Rearden, and G L Jones
March 2000, Blood reviews,
M J Tanner, and L Bruce, and P G Martin, and D M Rearden, and G L Jones
August 2000, The Biochemical journal,
M J Tanner, and L Bruce, and P G Martin, and D M Rearden, and G L Jones
December 1994, Fukuoka igaku zasshi = Hukuoka acta medica,
M J Tanner, and L Bruce, and P G Martin, and D M Rearden, and G L Jones
January 1989, Progress in clinical and biological research,
Copied contents to your clipboard!