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  2. Sickle cell disease - Wikipedia

    en.wikipedia.org/wiki/Sickle_cell_disease

    Genetics Sickle cell disease is inherited in an autosomal recessive pattern. Distribution of the sickle cell trait, shown in pink and purple Historical distribution of malaria (no longer endemic in Europe), shown in green Modern distribution of malaria Base-pair substitution that causes sickle cell anemia

  3. Sickle cell trait - Wikipedia

    en.wikipedia.org/wiki/Sickle_cell_trait

    Sickle cell trait describes a condition in which a person has one abnormal allele of the hemoglobin beta gene (is heterozygous), but does not display the severe symptoms of sickle cell disease that occur in a person who has two copies of that allele (is homozygous).

  4. Human genetic resistance to malaria - Wikipedia

    en.wikipedia.org/wiki/Human_genetic_resistance...

    Sickle cell – The gene for HbS associated with sickle-cell is today distributed widely throughout sub-Saharan Africa, the Middle East, and parts of the Indian subcontinent, where carrier frequencies range from 5–40% or more of the population.

  5. FDA approves gene therapy for sickle cell disease: 'One ... - AOL

    www.aol.com/fda-approves-gene-therapy-sickle...

    Sickle cell is the most common disease to receive approval for gene therapy treatment, following decades of development and years of approvals for therapy for people with rarer conditions.

  6. US FDA approves two gene therapies for sickle cell disease - AOL

    www.aol.com/news/us-approves-two-gene-therapies...

    Sickle cell disease (SCD) is a painful, inherited blood disorder in which the body makes flawed, sickle-shaped hemoglobin, impairing the ability of red blood cells to properly carry oxygen to the ...

  7. Mendelian traits in humans - Wikipedia

    en.wikipedia.org/wiki/Mendelian_traits_in_humans

    Mendelian traits in humans. A 50/50 chance of inheritance. Sickle-cell disease is inherited in the autosomal recessive pattern. When both parents have sickle-cell trait (carrier), a child has a 25% chance of sickle-cell disease (red icon), 25% do not carry any sickle-cell alleles (blue icon), and 50% have the heterozygous (carrier) condition. [1]

  8. Pleiotropy - Wikipedia

    en.wikipedia.org/wiki/Pleiotropy

    Pleiotropy. Simple genotype–phenotype map that only shows additive pleiotropy effects. G1, G2, and G3 are different genes that contribute to phenotypic traits P1, P2, and P3. Pleiotropy (from Greek πλείων pleion, 'more', and τρόπος tropos, 'way') occurs when one gene influences two or more seemingly unrelated phenotypic traits.

  9. Sickle cell-beta thalassemia - Wikipedia

    en.wikipedia.org/wiki/Sickle_cell-beta_thalassemia

    Sickle cell-beta thalassemia is caused by inheritance of a sickle cell allele from one parent and a beta thalassemia allele from the other. Mutations. A sickle allele is always the same mutation of the beta-globin gene (glutamic acid to valine at amino acid six). In contrast, beta-thalassemia alleles can be created by many different mutations ...

  10. Hemoglobin E - Wikipedia

    en.wikipedia.org/wiki/Hemoglobin_E

    Hemoglobin E ( HbE) is an abnormal hemoglobin with a single point mutation in the β chain. At position 26 there is a change in the amino acid, from glutamic acid to lysine (E26K). Hemoglobin E is very common among people of Southeast Asian, Northeast Indian, Sri Lankan and Bangladeshi descent. [1] [2]

  11. Beta thalassemia - Wikipedia

    en.wikipedia.org/wiki/Beta_thalassemia

    Beta thalassemia genetics, the picture shows one example of how beta thalassemia is inherited. The beta globin gene is located on chromosome 11. A child inherits two beta globin genes (one from each parent). Specialty: Hematology: Types: Thalassemia minor, intermediate and major: Causes: Mutations in the HBB gene: Diagnostic method: DNA ...