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公开(公告)号:US20170159082A1
公开(公告)日:2017-06-08
申请号:US15368419
申请日:2016-12-02
Applicant: INVISTA North America S.a.r.l.
CPC classification number: C12P7/26 , C12N9/0006 , C12N9/001 , C12N9/1029 , C12N9/13 , C12N9/88 , C12P11/00 , C12P13/00 , C12P19/32 , C12P21/00 , C12Y101/01035 , C12Y101/011 , C12Y103/01009 , C12Y103/01038 , C12Y203/01016 , C12Y203/01041 , C12Y203/01174 , C12Y203/01179 , C12Y203/0118 , C12Y208/03 , C12Y402/01017
Abstract: This document describes biochemical pathways for producing 7-aminoheptanoic acid using a β-ketoacyl synthase or a β-ketothiolase to form either a 5-amino-3-oxopentanoyl-[ACP] or 5-amino-3-oxopentanoyl-CoA intermediate. 7-aminoheptanoic acid can be enzymatically converted to pimelic acid, 7-hydroxyheptanoic acid, heptamethylenediamine or 1,7-heptanediol or the corresponding salts thereof. This document also describes recombinant microorganisms producing 7-aminoheptanoic acid as well as pimelic acid, 7-hydroxyheptanoic acid, heptamethylenediamine and 1,7-heptanediol or the corresponding salts thereof.
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公开(公告)号:US20170306362A1
公开(公告)日:2017-10-26
申请号:US15478334
申请日:2017-04-04
Applicant: INVISTA NORTH AMERICA S.A.R.L.
Inventor: Paul S. PEARLMAN , Changlin CHEN , Adriana Leonora BOTES
IPC: C12P7/44 , C12N1/16 , C12P17/10 , C12P13/00 , C12P7/52 , C12P7/46 , C12P7/42 , C12P7/40 , C12P7/18 , C12P5/02 , C12P1/02 , C12N9/18 , C02F3/34 , C07C55/14 , C07C51/21
CPC classification number: C12P7/44 , C02F3/342 , C07C51/21 , C07C55/14 , C12N1/16 , C12N9/18 , C12P1/02 , C12P5/02 , C12P7/18 , C12P7/40 , C12P7/42 , C12P7/46 , C12P7/52 , C12P13/001 , C12P13/005 , C12P17/10 , C12Y301/01001 , C12Y301/01003 , C12Y301/01017 , C12Y301/01025 , C12Y301/01074 , C12Y301/01075 , C12Y301/01076 , Y02P20/52
Abstract: The invention relates to methods for enriching monomer content in a cycloalkane oxidation process mixed organic waste stream. In particular, the methods involve combining a biocatalyst with a mixed organic waste stream from a cycloalkane oxidation process, and enzymatically converting dimeric and/or oligomeric components of said waste stream into monomeric components. The methods may enrich the content of diacids, adipic acid, and/or other α,ω-difunctional C6 alkanes in the mixed organic waste stream. Additionally, the treated mixed organic waste streams may have improved burning efficiency.
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公开(公告)号:US20180273987A1
公开(公告)日:2018-09-27
申请号:US15903744
申请日:2018-02-23
Applicant: INVISTA NORTH AMERICA S.A.R.L.
Inventor: Nadia Fatma KADI , Mariusz Stanislaw KAMIONKA , Alexander Brett FOSTER , Alex Van Eck CONRADIE , Adriana Leonora BOTES
IPC: C12P7/62 , C12N9/02 , C07C69/42 , C12N9/10 , C12N9/16 , C12N15/52 , C12P13/00 , C12P7/42 , C12P7/44 , C07C229/08 , C12N9/18
CPC classification number: C12P7/62 , C07C69/42 , C07C229/08 , C12N9/0008 , C12N9/1007 , C12N9/1096 , C12N9/16 , C12N9/18 , C12N15/52 , C12P7/42 , C12P7/44 , C12P13/001 , C12Y102/99006 , C12Y201/01197 , C12Y206/01018 , C12Y206/01038 , C12Y301/01085
Abstract: This document describes biochemical pathways for producing 2,4-pentadienoyl-CoA by forming one or two terminal functional groups, comprised of carboxyl or hydroxyl group, in a C5 backbone substrate such as glutaryl-CoA, glutaryl-[acp] or glutarate methyl ester. 2,4-pentadienoyl-CoA can be enzymatically converted to 1,3-butadiene.
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公开(公告)号:US20180066296A9
公开(公告)日:2018-03-08
申请号:US15368092
申请日:2016-12-02
Applicant: INVISTA North America S.a.r.l.
CPC classification number: C12P19/32 , C08G69/02 , C12N9/0008 , C12N9/1029 , C12N9/1096 , C12N9/13 , C12P7/18 , C12P7/42 , C12P7/48 , C12P11/00 , C12P13/00 , C12P13/001 , C12P21/00 , C12Y102/99006 , C12Y203/01 , C12Y203/01016 , C12Y203/01041 , C12Y203/01174 , C12Y203/01179 , C12Y203/0118 , C12Y206/01018 , C12Y208/03
Abstract: This document describes biochemical pathways for producing 7-aminoheptanoic acid using a β-ketoacyl synthase or a β-ketothiolase to form an N-acetyl-5-amino-3-oxopentanoyl-CoA intermediate. 7-aminoheptanoic acid can be enzymatically converted to pimelic acid, 7-hydroxyheptanoic acid, heptamethylenediamine or 1,7-heptanediol or corresponding salts thereof. This document also describes recombinant microorganisms producing 7-aminoheptanoic acid as well as pimelic acid, 7-hydroxyheptanoic acid, heptamethylenediamine and 1,7-heptanediol or corresponding salts thereof.
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公开(公告)号:US20170159092A1
公开(公告)日:2017-06-08
申请号:US15368092
申请日:2016-12-02
Applicant: INVISTA North America S.a.r.l.
CPC classification number: C12P19/32 , C08G69/02 , C12N9/0008 , C12N9/1029 , C12N9/1096 , C12N9/13 , C12P7/18 , C12P7/42 , C12P7/48 , C12P11/00 , C12P13/00 , C12P13/001 , C12P21/00 , C12Y102/99006 , C12Y203/01 , C12Y203/01016 , C12Y203/01041 , C12Y203/01174 , C12Y203/01179 , C12Y203/0118 , C12Y206/01018 , C12Y208/03
Abstract: This document describes biochemical pathways for producing 7-aminoheptanoic acid using a β-ketoacyl synthase or a β-ketothiolase to form an N-acetyl-5-amino-3-oxopentanoyl-CoA intermediate. 7-aminoheptanoic acid can be enzymatically converted to pimelic acid, 7-hydroxyheptanoic acid, heptamethylenediamine or 1,7-heptanediol or corresponding salts thereof. This document also describes recombinant microorganisms producing 7-aminoheptanoic acid as well as pimelic acid, 7-hydroxyheptanoic acid, heptamethylenediamine and 1,7-heptanediol or corresponding salts thereof.
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公开(公告)号:US20190300913A1
公开(公告)日:2019-10-03
申请号:US16376721
申请日:2019-04-05
Applicant: INVISTA NORTH AMERICA S.A.R.L.
Inventor: Alex Van Eck CONRADIE , Adriana Leonora BOTES
IPC: C12P5/02
Abstract: This document describes biochemical pathways for producing butadiene by forming two vinyl groups in a butadiene synthesis substrate. These pathways described herein rely on enzymes such as, inter alia, a decarboxylating thioesterase, cytochrome P450, or dehydratases for the final enzymatic step.
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公开(公告)号:US20190203241A1
公开(公告)日:2019-07-04
申请号:US16299698
申请日:2019-03-12
Applicant: INVISTA NORTH AMERICA S.A.R.L.
Inventor: Alex Van Eck CONRADIE , Adriana Leonora BOTES
CPC classification number: C12P19/32 , C12N9/1029 , C12P7/26 , C12P7/40 , C12Y203/01016
Abstract: This document describes biochemical pathways that include the production of 3-oxopent-4-enoyl-CoA by condensation of acryloyl-CoA and acetyl-CoA using a β-ketothiolase with a SER-HIS-HIS catalytic triad. These pathways described herein rely on enzymes such as, inter alia, dehydrogenases, dehydratases and β-ketothiolases.
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