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    • 4. 发明申请
    • USE OF DIMETHYL DISULFIDE FOR METHIONINE PRODUCTION IN MICROORGANISMS
    • 二甲基磺脲在微生物中的生产中的应用
    • WO2007011939A3
    • 2007-07-05
    • PCT/US2006027855
    • 2006-07-18
    • BASF AGZELDER OSKARHAEFNER STEFANHEROLD ANDREAKLOPPROGGE CORINNASCHRODER HARTWIGYOCUM R ROGERSWILLIAMS MARK K
    • ZELDER OSKARHAEFNER STEFANHEROLD ANDREAKLOPPROGGE CORINNASCHRODER HARTWIGYOCUM R ROGERSWILLIAMS MARK K
    • C12P13/12
    • C12P13/12
    • The present invention features improved processes and organisms for the production of methionine. The invention demonstrates that a ?metF organism or a ?metE AmetH organism, for example, mutants of C. glutamicum or E. coli, can use a methyl capped sulfide source, e.g., dimethyl disulfide (DMDS), as a source of both sulfur and a methyl group, bypassing the need for MetH/Met? and MetF activity and the need to reduce sulfate, for the synthesis of methionine. Also described in this patent are data implicating MetY (also called MetZ) as an enzyme that incorporates a methyl capped sulfide source, e.g., DMDS, into methionine. A ?metF ?metB strain of C. glutamicum can use a methyl capped sulfide source, e.g., DMDS, as a source of both sulfide and a methyl group. Furthermore, methionine production by engineered prototrophic organisms that overproduce O-acetyl-homoserine was improved by the addition of a methyl capped sulfide source, e.g., DMDS.
    • 本发明的特征在于用于生产甲硫氨酸的改进方法和生物体。 本发明证明,metF生物体或αmetE AmetH生物体,例如谷氨酸棒状杆菌或大肠杆菌的突变体可以使用甲基封端的硫化物源,例如二甲基二硫(DMDS)作为硫的来源 和甲基,绕过MetH / Met? 和MetF活性以及减少硫酸盐的需要,用于合成甲硫氨酸。 该专利中还描述了涉及MetY(也称为MetZ)的数据,其作为将甲基封端的硫化物源(例如DMDS)并入甲硫氨酸中的酶。 谷氨酸棒状芽孢杆菌的ΔFIFFmetB菌株可以使用甲基封端的硫化物源,例如DMDS,作为硫化物和甲基两者的来源。 此外,通过加入甲基封端的硫化物源(例如DMDS),改善过度产生O-乙酰高丝氨酸的工程化原养殖生物体的甲硫氨酸生产。
    • 6. 发明专利
    • BRPI0519165A2
    • 2008-12-30
    • BRPI0519165
    • 2005-12-21
    • BASF AG
    • HAFNER STEFANKLOPPROGGE CORINNAHEROLD ANDREASCHROEDER HARTWIGZELDER OSKAR
    • C12N15/77C07K14/34
    • An expression unit (A) that contains several promoters is new. A new expression unit (A) comprises several promoters and includes, in the 5' to 3' direction the sequence module (I). 5'-P 1-(A x-P x) n-A y-P y-3' (I) n = integer 0-10; A x and A y = same or different chemical bonds or nucleic acid linker sequences; P 1, P x and P y = same or different promoter sequences, containing at least one RNA-polymerase binding region, and at least P y also includes a ribosome-binding, 3'-terminal segment. Independent claims are also included for: (1) an expression cassette (EC) that contains, in the 5' to 3' direction, the sequence module (II); (2) vector that contains at least one EC; (3) a genetically modified microorganism (GMO) transfected with the vector of (2) or containing EC; and (4) method for preparing biosynthetic products (X) by culturing GMO. 5'-P 1-(A x-P x) n-A y-P y-G-3' (II) G : at least one nucleic acid coding sequence functionally linked to the 5'-upstream regulatory sequence.