Production of recombinant human type I procollagen homotrimer in the mammary gland of transgenic mice |
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Authors: | P. David Toman Frank Pieper Naomi Sakai Costas Karatzas Erika Platenburg Ineke de Wit Caroline Samuel Anita Dekker Gregory A. Daniels Richard A. Berg Gerard J. Platenburg |
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Affiliation: | (1) Cohesion Technologies, 2500 Faber Place, PaloAlto, CA 94303, USA;(2) Pharming BV, Niels Bohrweg, 1113 2333 CALeiden, The Netherlands |
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Abstract: | The large scale production of recombinant collagen for use in biomaterials requires an efficient expression system capable of processing a large (>400Kd) multisubunit protein requiring post-translational modifications. To investigate whether the mammary gland of transgenic animals fulfills these requirements, transgenic mice were generated containing the S1-casein mammary gland-specific promoter operatively linked to 37Kb of the human 1(I) procollagen structural gene and 3 flanking region. The frequency of transgenic lines established was 12%. High levels of soluble triple helical homotrimeric [(1)3] type I procollagen were detected (up to 8mg/ml) exclusively in the milk of six out of 9 lines of lactating transgenic mice. The transgene-derived human procollagen chains underwent efficient assembly into a triple helical structure. Although proline or lysine hydroxylation has never been described for any milk protein, procollagen was detected with these post-translational modifications. The procollagen was stable in mil; minimal degradation was observed. These results show that the mammary gland is capable of expressing a large procollagen gene construct, efficiently assembling the individual polypeptide chains into a stable triple helix, and secreting the intact molecule into the milk. |
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Keywords: | collagen transgenic mice expression mammary gland biomaterial |
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