Cellular uptake and lysosomal delivery of galactocerebrosidase tagged with the HIV Tat protein transduction domain
Autor: | Su-Chen Li, James Cronin, Xian Yang Zhang, Jakob Reiser, Annie Dinh |
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Rok vydání: | 2008 |
Předmět: |
Molecular Sequence Data
Biology Endocytosis Biochemistry Epitope Mice Mice Neurologic Mutants Cellular and Molecular Neuroscience Transduction (genetics) Transduction Genetic Chlorocebus aethiops medicine Animals Humans Amino Acid Sequence Receptor Cells Cultured Galactocerebrosidase Leukodystrophy Fibroblasts medicine.disease Subcellular localization In vitro Protein Structure Tertiary Cell biology COS Cells tat Gene Products Human Immunodeficiency Virus Lysosomes Galactosylceramidase HeLa Cells |
Zdroj: | Journal of Neurochemistry. 104:1055-1064 |
ISSN: | 1471-4159 0022-3042 |
Popis: | A number of studies have shown that a short peptide, the protein transduction domain (PTD) derived from the HIV-1 Tat protein (Tat-PTD) improved cellular uptake in vitro and distribution in vivo of recombinant proteins bearing such PTDs when administered systemically. To investigate the effects of Tat-PTD addition on the subcellular localization of the lysosomal enzyme galactocerebrosidase (GALC, EC 3.2.2.46) and with a view towards designing improved therapeutic strategies for Krabbe disease (globoid cell leukodystrophy), mouse GALC was tagged C-terminally with the Tat-PTD. Compared with unmodified GALC, GALC bearing a Tat-PTD, a myc epitope and 6 consecutive His residues [GALC-TMH (Tat-PTD, a myc epitope and 6 consecutive His residues)] was found to be secreted more efficiently. Also, GALC-TMH was found to be taken up by cells both via mannose-6-phosphate receptor (M6PR)-mediated endocytosis as well as by M6PR-independent mechanisms. GALC-TMH displayed increased M6PR-independent uptake in fibroblasts derived from twitcher mice (a murine model of globoid cell leukodystrophy) and in neurons derived from the mouse brain cortex compared with GALC lacking a Tat-PTD. Immunocytochemical analyses revealed that Tat-modified GALC protein co-localized in part with the lysosome-associated membrane protein-1. Complete correction of galactosylceramide accumulation was achieved in twitcher mouse fibroblasts lacking GALC activity following addition of GALC-TMH. Therefore, GALC-TMH not only maintained the features of the native GALC protein including enzymatic function, intracellular transport and location, but also displayed more efficient cellular uptake. |
Databáze: | OpenAIRE |
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