Invention Grant
- Patent Title: Methods and compositions for synthesis of nucleic acid molecules using multiple recognition sites
- Patent Title (中): 使用多个识别位点合成核酸分子的方法和组合物
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Application No.: US10792035Application Date: 2004-03-04
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Publication No.: US07198924B2Publication Date: 2007-04-03
- Inventor: Jonathan D. Chesnut , John Carrino , Louis Leong , Knut Madden , Martin A. G. Gleeson , James Fan , Michael A. Brasch , David Cheo , James L. Hartley , Devon R. N. Byrd , Gary F. Temple
- Applicant: Jonathan D. Chesnut , John Carrino , Louis Leong , Knut Madden , Martin A. G. Gleeson , James Fan , Michael A. Brasch , David Cheo , James L. Hartley , Devon R. N. Byrd , Gary F. Temple
- Applicant Address: US CA Carlsbad
- Assignee: Invitrogen Corporation
- Current Assignee: Invitrogen Corporation
- Current Assignee Address: US CA Carlsbad
- Agency: Sterne, Kessler, Goldstein and Fox PLLC
- Main IPC: C12P19/34
- IPC: C12P19/34 ; C12Q1/68

Abstract:
The present invention provides compositions and methods for recombinational cloning. The compositions include vectors having multiple recombination sites and/or multiple topoisomerase recognition sites. The methods permit the simultaneous cloning of two or more different nucleic acid molecules. In some embodiments the molecules are fused together while in other embodiments the molecules are inserted into distinct sites in a vector. The invention also generally provides for linking or joining through recombination a number of molecules and/or compounds (e.g., chemical compounds, drugs, proteins or peptides, lipids, nucleic acids, carbohydrates, etc.) which may be the same or different. The invention also provides host cells comprising nucleic acid molecules of the invention or prepared according to the methods of the invention, and also provides kits comprising the compositions, host cells and nucleic acid molecules of the invention, which may be used to synthesize nucleic acid molecules according to the methods of the invention.
Public/Granted literature
- US20040265863A1 Methods and compositions for synthesis of nucleic acid molecules using multiple recognition sites Public/Granted day:2004-12-30
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