Skip to main content
Top
Published in: Journal of Inherited Metabolic Disease 3/2010

Open Access 01-12-2010 | Research Report

Adipocytes participate in storage in α-galactosidase deficiency (Fabry disease)

Authors: Helena Hůlková, Milan Elleder

Published in: Journal of Inherited Metabolic Disease | Special Issue 3/2010

Login to get access

Abstract

Ultrastructural and histochemical studies of bioptic and postmortem tissue samples from ten Fabry hemizygotes showed lysosomal storage in adipocytes as a constant feature of the classic phenotype of α-galactosidase (GLA) deficiency. The storage was represented by a crescent-shaped line of storage lysosomes of varying thicknesses restricted to the perinuclear subplasmalemmal area. The ultrastructure of the storage lysosomes was dominated by concentric lipid membranes modified by simultaneous deposition of autofluorescent ceroid. Storage was widely expressed in adipose tissue. The number of storage lysosomes was increased, and the lysosomes were more clustered in adipocytes with less voluminous lipid content. The findings should attract interest to studies of adipose tissue biology in Fabry disease, a topic that has not been studied so far. In terms of cell biology, the observations represent indirect evidence of significant lysosomal turnover of α-galactose lipid conjugates in adipocytes demasked by GLA deficiency. The results extend the thus far limited information on the adipocyte lysosomal system and its participation in lysosomal storage disorders.
Literature
go back to reference Borisov AB (1982) Changes in lysosomal enzyme activity in the process of L-cell adipocyte differentiation. Tsitologiia 24:1440–1443PubMed Borisov AB (1982) Changes in lysosomal enzyme activity in the process of L-cell adipocyte differentiation. Tsitologiia 24:1440–1443PubMed
go back to reference Desnick RJ, Ioannou YA, Eng CM (2001) Alpha-galactosidase A deficiency: Fabry disease. In: Scriver CR, Beaudet AL, Sly WS, Valle D (eds) The metabolic and molecular bases of inherited disease. McGraw-Hill, New York, pp 3733–3774 Desnick RJ, Ioannou YA, Eng CM (2001) Alpha-galactosidase A deficiency: Fabry disease. In: Scriver CR, Beaudet AL, Sly WS, Valle D (eds) The metabolic and molecular bases of inherited disease. McGraw-Hill, New York, pp 3733–3774
go back to reference Du H, Heur M, Duanmu M et al (2001) Lysosomal acid lipase-deficient mice: depletion of white and brown fat, severe hepatosplenomegaly, and shortened life span. J Lipid Res 42:489–500PubMed Du H, Heur M, Duanmu M et al (2001) Lysosomal acid lipase-deficient mice: depletion of white and brown fat, severe hepatosplenomegaly, and shortened life span. J Lipid Res 42:489–500PubMed
go back to reference Elleder M (1984) Ito cells in lysosomal storage disorders. An ultrastructural study. Virchows Arch B pathol 46:13–19CrossRef Elleder M (1984) Ito cells in lysosomal storage disorders. An ultrastructural study. Virchows Arch B pathol 46:13–19CrossRef
go back to reference Elleder M (2010) Subcellular, cellular and organ pathology of Fabry Disease. In: Elstein D, ed. Fabry’s Disease. Springer (in press) Elleder M (2010) Subcellular, cellular and organ pathology of Fabry Disease. In: Elstein D, ed. Fabry’s Disease. Springer (in press)
go back to reference Hou JC, Williams D, Vicogne J, Pessin JE (2009) The glucose transporter 2 undergoes plasma membrane endocytosis and lysosomal degradation in a secretagogue-dependent manner. Endocrinology 150:4056–4064PubMedCrossRef Hou JC, Williams D, Vicogne J, Pessin JE (2009) The glucose transporter 2 undergoes plasma membrane endocytosis and lysosomal degradation in a secretagogue-dependent manner. Endocrinology 150:4056–4064PubMedCrossRef
go back to reference Hulkova H, Ledvinova J, Poupetova H, Kohout A, Malinova V, Elleder M (2009) Autopsy case of Gaucher disease type I in a patient on enzyme replacement therapy. Comments on the dynamics of persistent storage process. J Inherit Metab Dis 32:551–559PubMedCrossRef Hulkova H, Ledvinova J, Poupetova H, Kohout A, Malinova V, Elleder M (2009) Autopsy case of Gaucher disease type I in a patient on enzyme replacement therapy. Comments on the dynamics of persistent storage process. J Inherit Metab Dis 32:551–559PubMedCrossRef
go back to reference Keslova-Veselikova J, Hulkova H, Dobrovolny R et al (2008) Replacement of alpha-galactosidase A in Fabry disease: effect on fibroblast cultures compared with biopsied tissues of treated patients. Virchows Arch 452:651–665PubMedCrossRef Keslova-Veselikova J, Hulkova H, Dobrovolny R et al (2008) Replacement of alpha-galactosidase A in Fabry disease: effect on fibroblast cultures compared with biopsied tissues of treated patients. Virchows Arch 452:651–665PubMedCrossRef
go back to reference Kobayashi M, Iwasaki M, Shigeta Y (1980) Receptor mediated insulin degradation decreased by chloroquine in isolated rat adipocytes. J Biochem 88:39–44PubMed Kobayashi M, Iwasaki M, Shigeta Y (1980) Receptor mediated insulin degradation decreased by chloroquine in isolated rat adipocytes. J Biochem 88:39–44PubMed
go back to reference Kovsan J, Ben-Romano R, Souza SC, Greenberg AS, Rudich A (2007) Regulation of adipocyte lipolysis by degradation of the perilipin protein: nelfinavir enhances lysosome-mediated perilipin proteolysis. J Biol Chem 282:21704–21711PubMedCrossRef Kovsan J, Ben-Romano R, Souza SC, Greenberg AS, Rudich A (2007) Regulation of adipocyte lipolysis by degradation of the perilipin protein: nelfinavir enhances lysosome-mediated perilipin proteolysis. J Biol Chem 282:21704–21711PubMedCrossRef
go back to reference Le Charpentier Y, Crouzet J, Le Charpentier M et al (1981) Fabry's disease without cutaneous angiokeratoma: diagnosis by electron microscope study of skin biopsy (author's transl). Sem Hôp 57:78–82PubMed Le Charpentier Y, Crouzet J, Le Charpentier M et al (1981) Fabry's disease without cutaneous angiokeratoma: diagnosis by electron microscope study of skin biopsy (author's transl). Sem Hôp 57:78–82PubMed
go back to reference Ledvinova J, Poupetova H, Hanackova A, Pisacka M, Elleder M (1997) Blood group B glycosphingolipids in alpha-galactosidase deficiency (Fabry disease): influence of secretor status. Biochim Biophys Acta 1345:180–187PubMedCrossRef Ledvinova J, Poupetova H, Hanackova A, Pisacka M, Elleder M (1997) Blood group B glycosphingolipids in alpha-galactosidase deficiency (Fabry disease): influence of secretor status. Biochim Biophys Acta 1345:180–187PubMedCrossRef
go back to reference Lee MJ, Fried SK (2006) Multilevel regulation of leptin storage, turnover, and secretion by feeding and insulin in rat adipose tissue. J Lipid Res 47:1984–1993PubMedCrossRef Lee MJ, Fried SK (2006) Multilevel regulation of leptin storage, turnover, and secretion by feeding and insulin in rat adipose tissue. J Lipid Res 47:1984–1993PubMedCrossRef
go back to reference Meshkinpour H, Vaziri ND, Zhou XJ et al (1996) Effects of experimental hemosiderosis on intestinal morphology, permeability, and tissue iron content. Dig Dis Sci 41:984–988PubMedCrossRef Meshkinpour H, Vaziri ND, Zhou XJ et al (1996) Effects of experimental hemosiderosis on intestinal morphology, permeability, and tissue iron content. Dig Dis Sci 41:984–988PubMedCrossRef
go back to reference Novikoff AB, Novikoff PM, Rosen OM, Rubin CS (1980) Organelle relationships in cultured 3T3-L1 preadipocytes. J Cell Biol 87:180–196PubMedCrossRef Novikoff AB, Novikoff PM, Rosen OM, Rubin CS (1980) Organelle relationships in cultured 3T3-L1 preadipocytes. J Cell Biol 87:180–196PubMedCrossRef
go back to reference Palacios S, Lalioti V, Martinez-Arca S, Chattopadhyay S, Sandoval IV (2001) Recycling of the insulin-sensitive glucose transporter GLUT4. Access of surface internalized GLUT4 molecules to the perinuclear storage compartment is mediated by the Phe5-Gln6-Gln7-Ile8 motif. J Biol Chem 276:3371–3383PubMedCrossRef Palacios S, Lalioti V, Martinez-Arca S, Chattopadhyay S, Sandoval IV (2001) Recycling of the insulin-sensitive glucose transporter GLUT4. Access of surface internalized GLUT4 molecules to the perinuclear storage compartment is mediated by the Phe5-Gln6-Gln7-Ile8 motif. J Biol Chem 276:3371–3383PubMedCrossRef
go back to reference Rowan SA, Lake BD (1995) Tissue and cellular distribution of subunit c of ATP synthase in Batten disease (neuronal ceroid-lipofuscinosis). Am J Med Genet 57:172–176PubMedCrossRef Rowan SA, Lake BD (1995) Tissue and cellular distribution of subunit c of ATP synthase in Batten disease (neuronal ceroid-lipofuscinosis). Am J Med Genet 57:172–176PubMedCrossRef
go back to reference Seehafer SS, Pearce DA (2006) You say lipofuscin, we say ceroid: defining autofluorescent storage material. Neurobiol Aging 27:576–588PubMedCrossRef Seehafer SS, Pearce DA (2006) You say lipofuscin, we say ceroid: defining autofluorescent storage material. Neurobiol Aging 27:576–588PubMedCrossRef
go back to reference Smith RM, Jarett L (1982) Ultrastructural basis for chloroquine-induced increase in intracellular insulin in adipocytes: alteration of lysosomal function. Proc Natl Acad Sci USA 79:7302–7306PubMedCrossRef Smith RM, Jarett L (1982) Ultrastructural basis for chloroquine-induced increase in intracellular insulin in adipocytes: alteration of lysosomal function. Proc Natl Acad Sci USA 79:7302–7306PubMedCrossRef
go back to reference Zvonic S, Baugh JE Jr, Arbour-Reily P, Mynatt RL, Stephens JM (2005) Cross-talk among gp130 cytokines in adipocytes. J Biol Chem 280:33856–33863PubMedCrossRef Zvonic S, Baugh JE Jr, Arbour-Reily P, Mynatt RL, Stephens JM (2005) Cross-talk among gp130 cytokines in adipocytes. J Biol Chem 280:33856–33863PubMedCrossRef
Metadata
Title
Adipocytes participate in storage in α-galactosidase deficiency (Fabry disease)
Authors
Helena Hůlková
Milan Elleder
Publication date
01-12-2010
Publisher
Springer Netherlands
Published in
Journal of Inherited Metabolic Disease / Issue Special Issue 3/2010
Print ISSN: 0141-8955
Electronic ISSN: 1573-2665
DOI
https://doi.org/10.1007/s10545-010-9160-0

Other articles of this Special Issue 3/2010

Journal of Inherited Metabolic Disease 3/2010 Go to the issue