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  • Contribution of novel ATGL missense mutations to the clinical phenotype of NLSD-M: a strikingly low amount of lipase activity may preserve cardiac function.

Contribution of novel ATGL missense mutations to the clinical phenotype of NLSD-M: a strikingly low amount of lipase activity may preserve cardiac function.

Human molecular genetics (2012-09-20)
Daniela Tavian, Sara Missaglia, Chiara Redaelli, Elena M Pennisi, Gloria Invernici, Ruediger Wessalowski, Robert Maiwald, Marcello Arca, Rosalind A Coleman
ZUSAMMENFASSUNG

The lack of adipose triglyceride lipase (ATGL), a patatin-like phospholipase domain-containing enzyme that hydrolyzes fatty acids from triacylglycerol (TAG) stored in multiple tissues, causes the autosomal recessive disorder neutral lipid storage disease with myopathy (NLSD-M). In two families of Lebanese and Italian origin presenting with NLSD-M, we identified two new missense mutations in highly conserved regions of ATGL (p.Arg221Pro and p.Asn172Lys) and a novel nonsense mutation (p.Trp8X). The Lebanese patients harbor homozygous p.Arg221Pro, whereas the Italian patients are heterozygotes for p.Asn172Lys and the p.Trp8X mutation. The p.Trp8X mutation results in a complete absence of ATGL protein, while the p.Arg221Pro and p.Asn172Lys mutations result in proteins with minimal lipolytic activity. Although these mutations did not affect putative catalytic residues or the lipid droplet (LD)-binding domain of ATGL, cytosolic LDs accumulated in cultured skin fibroblasts from the patients. The missense mutations might destabilize a random coil (p.Asn172Lys) or a helix (p.Arg221Pro) structure within or proximal to the patatin domain of the lipase, thereby interfering with the enzyme activity, while leaving intact the residues required to localize the protein to LDs. Overexpressing wild-type ATGL in one patient's fibroblasts corrected the metabolic defect and effectively reduced the number and area of cellular LDs. Despite the poor lipase activity in vitro, the Lebanese siblings have a mild myopathy and not clinically evident myocardial dysfunction. The patients of Italian origin show a late-onset and slowly progressive skeletal myopathy. These findings suggest that a small amount of correctly localized lipase activity preserves cardiac function in NLSD-M.

MATERIALIEN
Produktnummer
Marke
Produktbeschreibung

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Lipase aus Candida rugosa, Type VII, ≥700 unit/mg solid
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Lipase-Acrylharz aus Candida antarctica, ≥5,000 U/g, recombinant, expressed in Aspergillus niger
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Lipase B Candida antarctica, rekombinant aus Aspergillus oryzae, powder, beige, ~9 U/mg
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Lipase aus Schweinepankreas, Type VI-S, ≥20,000 units/mg protein, lyophilized powder
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Lipase aus Aspergillus niger, powder (fine), ~200 U/g
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Lipase aus Candida rugosa, lyophilized powder, ≥40,000 units/mg protein
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Lipase aus Candida sp., recombinant, expressed in Aspergillus niger
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Lipase, immobilisiert aus Candida antarctica, beads, slightly brown, >2 U/mg
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Lipase aus Rhizomucor miehei, ≥20,000 U/g
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Lipase aus Rhizopus oryzae, powder (fine), ~10 U/mg
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Lipase aus Candida rugosa, powder, yellow-brown, ≥2 U/mg
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Lipase aus Pseudomonas sp., Type XIII, lyophilized powder, ≥15 units/mg solid
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Lipase aus Aspergillus oryzae, lyophilized, powder, white, ~50 U/mg
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Lipase aus Candida rugosa, lyophilized, powder (fine), 15-25 U/mg
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Lipase aus Rhizopus niveus, powder (fine), ≥1.5 U/mg
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Lipase A Candida antarctica, rekombinant aus Aspergillus oryzae, powder, beige, ~2 U/mg
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Lipase aus Mucor javanicus, lyophilized powder, ≥300 units/mg solid (using olive oil)