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PMID: 15084520 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Targeting macrophages with baculovirus-produced lysosomal enzymes: implications for enzyme replacement therapy of the glycoprotein storage disorder galactosialidosis.

Bonten EJ, Wang D, Toy JN, Mann L, Mignardot A, Yogalingam G, D'Azzo A

Abstract

Lysosomal storage diseases (LSDs) are monogenic disorders of metabolism caused by deficiency of hydrolytic enzymes. In several LSDs, cells of the reticuloendothelial (RE) system are the primary targets of the disease. Exogenous administration of recombinant enzymes overproduced in mammalian cells has proved effective for treating the systemic phenotype in nonneuropathic patients with LSDs. However, for the treatment of diseases with primary involvement of the RE system, the production of the therapeutic enzyme in insect cells could be an alternative and advantageous method because glycoproteins expressed in insect cells carry carbohydrates of the pauci-mannose or core-type. These recombinant enzymes are in principle already poised to be internalized by cells that express mannose receptors, including macrophages. Here, we demonstrate that three baculovirus-expressed enzymes, protective protein/cathepsin A (PPCA), neuraminidase (Neu1), and beta-glucosidase, were readily taken up and restored lysosomal function in enzyme-deficient mouse macrophages. The capacity of recombinant PPCA and Neu1 to clear the lysosomal storage in target cells was assessed in PPCA-/- mice, a model of galactosialidosis. Intravenously injected PPCA-/- mice efficiently internalized the corrective enzymes in resident macrophages of many organs. In addition, treated mice showed overall clearance of lysosomal storage in the most affected systemic organs, kidney, liver, and spleen. Our results suggest that ERT with baculovirus-expressed enzymes might be an effective treatment for nonneuropathic patients with galactosialidosis and possibly for others with LSDs that primarily involve the RE system.

MeSH Terms
Animals Baculoviridae/genetics Catalysis Cathepsin A/administration & dosage,genetics,metabolism,therapeutic use Cell Line Gene Deletion Humans Kidney/drug effects,pathology Liver/chemistry,drug effects,metabolism,pathology Lysosomal Storage Diseases/drug therapy,enzymology,pathology Lysosomes/enzymology Macrophages/cytology,drug effects,enzymology Mice Neuraminidase/administration & dosage,genetics,metabolism,therapeutic use Oligosaccharides/chemistry,metabolism Recombinant Proteins/biosynthesis,genetics,isolation & purification,pharmacology Spleen/drug effects,pathology Spodoptera/cytology,virology Vacuoles/enzymology,pathology beta-Glucosidase/administration & dosage,biosynthesis,genetics,therapeutic use
Chemicals
Oligosaccharides Recombinant Proteins Neuraminidase beta-Glucosidase Cathepsin A
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Bonten Erik J
Department of Genetics and Tumor Cell Biology, St. Jude Children's Research Hospital, Memphis, Tennessee 38105-2794, USA.
Wang Dongning
Toy James N
Mann Linda
Mignardot Aurélie
Yogalingam Gouri
D'Azzo Alessandra
Article Info
Journal
FASEB journal : official publication of the Federation of American Societies for Experimental Biology
Abbr.
FASEB J
ISSN
1530-6860
Published
2004-06-00
Epub
2004-00-14
Pages
971-3
Language
English
Region
United States
NLM ID
8804484
Subset
IM
Grants
NIDDK NIH HHS · DK-52025 · United States
NIGMS NIH HHS · GM-60950 · United States
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