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  2. Organic acidemia - Wikipedia

    en.wikipedia.org/wiki/Organic_acidemia

    Most of the organic acidemias result from defective autosomal genes for various enzymes important to amino acid metabolism.Neurological and physiological harm is caused by this impaired ability to synthesize a key enzyme required to break down a specific amino acid, or group of amino acids, resulting in acidemia and toxicity to specific organs systems.

  3. Hartnup disease - Wikipedia

    en.wikipedia.org/wiki/Hartnup_disease

    Consequently, a person with Hartnup disease cannot absorb amino acids properly from the intestine and cannot reabsorb them properly from tubules in the kidneys. Excessive amounts of amino acids, such as tryptophan, are excreted in the urine. The body is thus left with inadequate amounts of amino acids, which are the building blocks of proteins.

  4. Amino acid - Wikipedia

    en.wikipedia.org/wiki/Amino_acid

    In addition, cysteine, tyrosine, and arginine are considered semiessential amino acids, and taurine a semi-essential aminosulfonic acid in children. Some amino acids are conditionally essential for certain ages or medical conditions. Essential amino acids may also vary from species to species.

  5. Propionic acidemia - Wikipedia

    en.wikipedia.org/wiki/Propionic_acidemia

    The essential amino acids valine, methionine, isoleucine, and threonine can not be converted and this leads to a buildup of propionyl-CoA. Instead of being converted to methylmalonyl-CoA, propionyl-CoA is then converted into propionic acid, which builds up in the bloodstream. This in turn causes an accumulation of dangerous acids and toxins ...

  6. Glutaric acidemia type 2 - Wikipedia

    en.wikipedia.org/wiki/Glutaric_acidemia_type_2

    Glutaric acidemia type 2 has an autosomal recessive pattern of inheritance. Mutations in the ETFA, ETFB, and ETFDH genes cause glutaric acidemia type II. Mutations in these genes result in a deficiency in one of two enzymes that normally work together in the mitochondria, which are the energy-producing centers of cells.

  7. Biotinidase deficiency - Wikipedia

    en.wikipedia.org/wiki/Biotinidase_deficiency

    Symptoms of the deficiency are caused by the inability to reuse biotin molecules that are needed for cell growth, production of fatty acids and the metabolism of fats and amino acids. If left untreated, the symptoms can lead to later problems such as comas or death.

  8. Branched-chain keto acid dehydrogenase kinase deficiency

    en.wikipedia.org/wiki/Branched-chain_keto_acid...

    Branched-chain keto acid dehydrogenase kinase deficiency (BCKDK deficiency) is a disease resulting from mutations of the BCKDK gene. Patients with BCKDK deficiency have low levels of branched chain amino acids (BCAA) in their organism due to accelerated breakdown of these essential amino acids.

  9. Hyperphenylalaninemia - Wikipedia

    en.wikipedia.org/wiki/Hyperphenylalaninemia

    Phenylketonuria (PKU)-like symptoms, including more pronounced developmental defects, skin irritation, and vomiting, may appear when phenylalanine levels are near 20 mg/dL (1200 mol/L). [1] Hyperphenylalaninemia is a recessive hereditary metabolic disorder that is caused by the body's failure to convert phenylalanine to tyrosine as a result of ...

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