Gene/Protein
Disease
Symptom
Drug
Enzyme
Compound
Pivot Concepts:
Gene/Protein
Disease
Symptom
Drug
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Target Concepts:
Gene/Protein
Disease
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Enzyme
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Query: UMLS:C0025362 (
mental retardation
)
15,878
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
Storage of cholesterol, cholesterol esters, and triglycerides with distribution in different organs is characteristical in 5 distinguishable familiary thesaurismoses. Cholesterol storage disease is due to relatively benign storage of cholesterol esters predominantly in the liver with gross enlargment of this organ. Acid
lipase
is lysosomes is also nearly inactive in the maligne Wolman's disease with calcification of the adrenals, hepatosplenomegalia and death during infancy by gastrointestinal complications. Very similar are other diseases without renal calcification but partly with pulmonal storage of cholesterol. In only one family another type of cholesterol lipidosis and cirrhosis together with aplasia of gall bladder, renal cysts, and hydronephrosis has been observed. Two types of pure triglyceride storage disease are described, but each of them in only few cases. Tendinous xanthomatosis by storage of cholestanol predominantly in brain with
mental retardation
, and xanthomatosis with beta-sitosterol but normal mental development are two rare steatoses with abnormal cholesterol-like lipids, in which xanthomatas are visible.
...
PMID:[Disease with storage of neutral lipids (author's transl)]. 703 73
Neutral lipid storage disease (NLSD) is an autosomal recessive disorder in which excess triacylglycerol (TG) accumulates in most cells. Although it has been hypothesized that the TG accumulation is caused by a functional defect in cytosolic
lipase
activity, we were able to expose TG hydrolysis in NLSD cells by using triacsin C, an inhibitor of acyl-CoA synthetase that blocks the reincorporation of hydrolyzed fatty acids into glycerolipids. Our data suggest that TG lipolysis in NLSD cells is masked by rapid TG resynthesis, occurring because released acylglycerols cannot be used for phospholipid synthesis. In uptake studies, triacsin C blocked the incorporation of [3H]glycerol into glycerolipids, incorporation of [14C]oleate into TG, but not incorporation of [14C]oleate into phospholipid. Thus, the drug inhibited both de novo synthesis of glycerolipids via the glycerol-3-phosphate pathway and the synthesis of TG from diacylglycerol. The drug did not appear to block reacylation of lysophospholipids. Triacsin C caused a loss of about 60% of the TG mass from both NLSD and oleate-loaded control cells. Rates of TG lipolysis were similar in NLSD cells and oleate-loaded control cells labeled with [6-(7-nitro-2,1,3-benzoxadiazol-4-yl)-amino]hexanoic acid or labeled with [14C]oleate or [3H]glycerol and chased in the presence of triacsin C. During a 96-h chase, [14C]oleate reincorporation into the different phospholipid species increased only in control cells. Similar results were observed when NLSD, and control cells were chased after labeling with [3H]glycerol. These data strongly suggest that normal human fibroblasts mobilize stored TG for phospholipid synthesis and that recycling to PC occurs via a TG-derived mono- or diacylglycerol intermediate. Normal recycling to phosphatidylethanolamine may primarily involve TG-derived acyl groups rather than an acylglycerol precursor. NLSD cells appear to have a block in this recycling pathway with the result that both hydrolyzed fatty acids and the acylglycerol backbone are re-esterified to form TG. Because the NLSD phenotype includes ichthyosis, fatty liver, myopathy, cardiomyopathy, and
mental retardation
, the recycling pathway appears to be critical for the normal function of skin, liver, muscle, heart, and the central nervous system.
...
PMID:Acylglycerol recycling from triacylglycerol to phospholipid, not lipase activity, is defective in neutral lipid storage disease fibroblasts. 866 20
Dorfman-Chanarin syndrome is a rare autosomal recessive inherited lipid storage disease characterized by ichthyosis, leukocyte lipid vacuoles, and involvement of several internal organs. Recently, CGI-58 mutations were identified as the cause of Dorfman-Chanarin syndrome. The physiologic roles of the CGI-58 protein and the pathomechanisms of Dorfman-Chanarin syndrome still remain to be clarified, however. The patient, a 16-y-old male, demonstrated ichthyosis, small ears, lipid vacuoles in his leukocytes, liver dysfunction, and
mental retardation
. Sequencing of CGI-58 revealed that the patient was homozygous for a novel nonsense mutation R184X, in exon 4. The putative truncated protein was 52.4% of the length of the normal CGI-58 polypeptide and lacked approximately 60% of the lipid binding region, 66.4% of the alpha/beta hydrolase folding segment of the polypeptide, and two of the CGI-58 catalytic triads, resulting in a significant loss of
lipase
/esterase/thioesterase activity. Electron microscopy revealed a large number of abnormal lamellar granules, a disturbed intercellular lamellar structure, and lipid vacuoles in the epidermis. These results suggested that CGI-58 protein is involved in the lipid metabolism of lamellar granules and that defective lipid production in lamellar granules caused by a CGI-58 protein deficiency is involved in the pathogenesis of ichthyosis in Dorfman-Chanarin syndrome.
...
PMID:Truncation of CGI-58 protein causes malformation of lamellar granules resulting in ichthyosis in Dorfman-Chanarin syndrome. 1470 2