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  2. Pleiotropy - Wikipedia

    en.wikipedia.org/wiki/Pleiotropy

    Sickle cell anemia is a classic example of the mixed benefit given by the staying power of pleiotropic genes, as the mutation to Hb-S provides the fitness benefit of malaria resistance to heterozygotes as sickle cell trait, while homozygotes have significantly lowered life expectancy—what is known as "heterozygote advantage". Since both of ...

  3. Hemoglobin C - Wikipedia

    en.wikipedia.org/wiki/Hemoglobin_C

    It is possible for a person to have both the gene for hemoglobin S (the form associated with sickle cell anemia) and the gene for hemoglobin C; this state is called hemoglobin SC disease, and is generally more severe than hemoglobin C disease, but milder than sickle cell anemia. [2]

  4. Human genetic resistance to malaria - Wikipedia

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

    Sickle-cell disease was the genetic disorder to be linked to a mutation of a specific protein. Pauling introduced his fundamentally important concept of sickle cell anemia as a genetically transmitted molecular disease. [20] This vein (4) shows the interaction between the malaria sporozoites (6) with sickle cells (3) and regular cells (1).

  5. Renal medullary carcinoma - Wikipedia

    en.wikipedia.org/wiki/Renal_medullary_carcinoma

    Renal medullary carcinoma is a rare type of cancer that affects the kidney.It tends to be aggressive, difficult to treat, and is often metastatic at the time of diagnosis. . Most individuals with this type of cancer have sickle cell trait or rarely sickle cell disease, suggesting that the sickle cell trait may be a risk factor for this type of ca

  6. Hemoglobin D-Punjab - Wikipedia

    en.wikipedia.org/wiki/Hemoglobin_D-Punjab

    People with hemoglobin D trait do not have Hemoglobin D disease or sickle cell disease. They cannot develop these diseases later in life. They cannot develop these diseases later in life. While Hemoglobin D can be detected without a DNA test, one is needed to ascertain that a person who carries Hemoglobin D carries hemoglobin D-Punjab.

  7. Congenital hemolytic anemia - Wikipedia

    en.wikipedia.org/wiki/Congenital_hemolytic_anemia

    The underlying cause of sickle cell anemia is the synthesis of aberrant hemoglobin, which attaches to other aberrant hemoglobin molecules inside the red blood cell to undergo rigid deformation. [18] Sickle cell anemia symptoms usually appear around the age of six months. They can change over time and differ from person to person.