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Variable and often severe phenotypic expression in patients with the α-thalassemic variant Hb Agrinio
Joanne Traeger-Synodinos1, Varvara Douna, Ioannis Papassotiriou
1Medical Genetics, Athens University Medical School, Aghia Sophia Children's Hospital, Athens, Greece. jtraeger@med.uoa.gr
Abstract:
Hb Agrinio [α29(B10)Leu→Pro] is a highly unstable variant, classified as a nondeletional α-thalassemia (α-thal) mutation. To date it has only been described in individuals of Greek and Cypriot origin. Evaluation of the phenotypic presentation of 12 Hb Agrinio homozygotes or compound heterozygotes, diagnosed in a single center in Greece during a 15-year period, found a wide clinical expression, ranging from thalassemia intermedia (with or without transfusion requirement) to Hb H hydrops fetalis, with some phenotype-to-genotype correlation. The often severe clinical presentation of Hb Agrinio homozygotes or Hb Agrinio compound heterozygotes, coinheriting severe α-thal determinants, indicates that molecular identification of carriers of the Hb Agrinio mutation should be considered within the context of screening programs involving individuals of Greek and Cypriot origin. Selective molecular investigation of candidate carriers is facilitated by the observation that all heterozygotes for the Hb Agrinio mutation present with at least one hematological parameter implicating an α-thal carrier state.
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Translation is the process of synthesizing proteins from the genetic information carried by messenger RNA (mRNA). Following transcription, it constitutes the final step in the expression of genes. This process is carried out by ribosomes, complexes of protein and specialized RNA molecules. Ribosomes, transfer RNA (tRNA), and other proteins produce a chain of amino acids—the polypeptide—as the end product of translation.
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Translation is the process of synthesizing proteins from the genetic information carried by messenger RNA (mRNA). Following transcription, it constitutes the final step in the expression of genes. This process is carried out by ribosomes, complexes of protein and specialized RNA molecules. Ribosomes, transfer RNA (tRNA), and other proteins produce a chain of amino acids—the polypeptide—as the end product of translation.
Translation Produces the Building Blocks of Life
