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    • 1. 发明授权
    • Mannitol induced promoter systems in bacterial host cells
    • 甘露醇诱导细菌宿主细胞中的启动子系统
    • US07476532B2
    • 2009-01-13
    • US11447553
    • 2006-06-06
    • J. Carrie SchneiderBettina Rosner
    • J. Carrie SchneiderBettina Rosner
    • C12N1/21C12N15/09C07H21/04
    • C07K14/21C12N15/78C12P21/02
    • The present invention provides methods for producing recombinant peptides in a bacterial host utilizing a mannitol, arabitol, glucitol, or glycerol-inducible promoter, wherein the host bacterial cell that produces the peptide has been rendered incapable of degrading or metabolizing mannitol, arabitol, or glucitol, or derivatives or analogues thereof. The present invention provides bacterial cells that have been genetically altered to inhibit the metabolism or degradation of mannitol, glucitol, or arabitol, or derivatives or analogues thereof. The present invention utilizes mannitol, arabitol, glucitol, or glycerol to induce expression of a target polypeptide from an inducible promoter, allowing for the use of an inexpensive and stable carbon source inducer in the fermentation processes for the production of recombinant peptides.
    • 本发明提供了利用甘露醇,阿糖醇,葡萄糖醇或甘油诱导型启动子在细菌宿主中产生重组肽的方法,其中产生该肽的宿主细菌细胞已经不能降解或代谢甘露醇,阿糖醇或葡萄糖醇 ,或其衍生物或类似物。 本发明提供已被遗传改变以抑制甘露醇,葡萄糖醇或阿拉伯糖醇或其衍生物或类似物的代谢或降解的细菌细胞。 本发明利用甘露醇,阿糖醇,葡萄糖醇或甘油从诱导型启动子诱导靶多肽的表达,允许在用于生产重组肽的发酵过程中使用便宜且稳定的碳源诱导剂。
    • 2. 发明授权
    • Mannitol induced promoter systems in bacterial host cells
    • 甘露醇诱导细菌宿主细胞中的启动子系统
    • US08017355B2
    • 2011-09-13
    • US12330723
    • 2008-12-09
    • J. Carrie SchneiderBettina Rosner
    • J. Carrie SchneiderBettina Rosner
    • C12P21/00C12N1/21C07H21/04
    • C07K14/21C12N15/78C12P21/02
    • The present invention provides methods for producing recombinant peptides in a bacterial host utilizing a mannitol, arabitol, glucitol, or glycerol-inducible promoter, wherein the host bacterial cell that produces the peptide has been rendered incapable of degrading or metabolizing mannitol, arabitol, or glucitol, or derivatives or analogues thereof. The present invention provides bacterial cells that have been genetically altered to inhibit the metabolism or degradation of mannitol, glucitol, or arabitol, or derivatives or analogues thereof. The present invention utilizes mannitol, arabitol, glucitol, or glycerol to induce expression of a target polypeptide from an inducible promoter, allowing for the use of an inexpensive and stable carbon source inducer in the fermentation processes for the production of recombinant peptides.
    • 本发明提供了利用甘露醇,阿糖醇,葡萄糖醇或甘油诱导型启动子在细菌宿主中产生重组肽的方法,其中产生该肽的宿主细菌细胞已经不能降解或代谢甘露醇,阿糖醇或葡萄糖醇 ,或其衍生物或类似物。 本发明提供已被遗传改变以抑制甘露醇,葡萄糖醇或阿拉伯糖醇或其衍生物或类似物的代谢或降解的细菌细胞。 本发明利用甘露醇,阿糖醇,葡萄糖醇或甘油从诱导型启动子诱导靶多肽的表达,允许在用于生产重组肽的发酵过程中使用便宜且稳定的碳源诱导剂。
    • 3. 发明申请
    • MANNITOL INDUCED PROMOTER SYSTEMS IN BACTERIAL HOST CELLS
    • MANNITOL诱导的细菌系统在细菌宿主细胞
    • US20090162899A1
    • 2009-06-25
    • US12330723
    • 2008-12-09
    • J. Carrie SchneiderBettina Rosner
    • J. Carrie SchneiderBettina Rosner
    • C12P21/00
    • C07K14/21C12N15/78C12P21/02
    • The present invention provides methods for producing recombinant peptides in a bacterial host utilizing a mannitol, arabitol, glucitol, or glycerol-inducible promoter, wherein the host bacterial cell that produces the peptide has been rendered incapable of degrading or metabolizing mannitol, arabitol, or glucitol, or derivatives or analogues thereof. The present invention provides bacterial cells that have been genetically altered to inhibit the metabolism or degradation of mannitol, glucitol, or arabitol, or derivatives or analogues thereof. The present invention utilizes mannitol, arabitol, glucitol, or glycerol to induce expression of a target polypeptide from an inducible promoter, allowing for the use of an inexpensive and stable carbon source inducer in the fermentation processes for the production of recombinant peptides.
    • 本发明提供了利用甘露醇,阿糖醇,葡萄糖醇或甘油诱导型启动子在细菌宿主中产生重组肽的方法,其中产生该肽的宿主细菌细胞已经不能降解或代谢甘露醇,阿糖醇或葡萄糖醇 ,或其衍生物或类似物。 本发明提供已被遗传改变以抑制甘露醇,葡萄糖醇或阿拉伯糖醇或其衍生物或类似物的代谢或降解的细菌细胞。 本发明利用甘露醇,阿糖醇,葡萄糖醇或甘油从诱导型启动子诱导靶多肽的表达,允许在用于生产重组肽的发酵过程中使用便宜且稳定的碳源诱导剂。