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October 29, 1996Proceedings of the National Academy of Sciences769 citationsOpen Access

Evidence for the role of proteoglycans in cation-mediated gene transfer.

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KMKimberly Ann MislickJBJohn D. Baldeschwieler

Key Points

  • To investigate whether cell-surface proteoglycans mediate the binding, cellular uptake, and transfection efficiency of polycation-plasmid DNA complexes.
  • Assessed luciferase reporter expression in HeLa cells following treatment with the sulfation inhibitor sodium chlorate, glycosaminoglycan-degrading enzymes (heparinase, chondroitinase ABC), and soluble glycosaminoglycans.
  • Measured DNA cell-membrane binding at 4 °C and intracellular uptake at 37 °C in wild-type and proteoglycan-deficient mutant Chinese hamster ovary (CHO) cells.
  • Sodium chlorate treatment reduced luciferase expression by 69%, while enzymatic treatment with heparinase and chondroitinase ABC reduced expression by 78% and 20%, respectively.
  • Proteoglycan-deficient CHO mutant cells exhibited 53-fold lower transfection efficiency compared to wild-type cells, with matching reductions in DNA surface binding and cellular uptake.

Abstract

We report evidence that gene complexes, consisting of polycations and plasmid DNA enter cells via binding to membrane-associated proteoglycans. Treatment of HeLa cells with sodium chlorate, a potent inhibitor of proteoglycan sulfation, reduced luciferase expression by 69%. Cellular treatment with heparinase and chondroitinase ABC inhibited expression by 78% and 20% with respect to control cells. Transfection was dramatically inhibited by heparin and heparan sulfate and to a smaller extent by chondroitan sulfate B. Transfection of mutant, proteoglycan deficient Chinese hamster ovary cells was 53 x lower than of wild-type cells. For each of these assays, the intracellular uptake of DNA at 37 degrees C and the binding of DNA to the cell membrane at 4 degrees C was impaired. Preliminary transfection experiments conducted in mutant and wild-type Chinese hamster ovary cells suggest that transfection by some cationic lipids is also proteoglycan dependent. The variable distribution of proteoglycans among tissues may explain why some cell types are more susceptible to transfection than others.

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Cite This Study

Mislick et al. (1996) studied this question.

synapsesocial.com/papers/6a03b8e7d2f86d5a82f01af9https://doi.org/10.1073/pnas.93.22.12349
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