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PNAG |
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PNAG is produced by the Pga machinery consisting of PgaABCD proteins. Pga complex probably spans the inner and outer bacterial membrane. PgaC and PgaD form an inner membrane-intergrated complex. PgaC is the cataytic glycosyltransferase containing 4-5 predicted transmembrane helices (TMHs). PgaD probably contains two TMHs with a short periplasmic loop and small cytosolic C terminus. PgaA is an outer membrane porin and might associate with PgaB, a periplasmic lipoprotein that is probably anchored to the outer membrane. PgaB deacetylates a small fraction of the polymer's NAG units. ... |
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PNAG |
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PNAG is produced by the Pga machinery consisting of PgaABCD proteins. Pga complex probably spans the inner and outer bacterial membrane. PgaC and PgaD form an inner membrane-intergrated complex. PgaC is the cataytic glycosyltransferase containing 4-5 predicted transmembrane helices (TMHs). PgaD probably contains two TMHs with a short periplasmic loop and small cytosolic C terminus. PgaA is an outer membrane porin and might associate with PgaB, a periplasmic lipoprotein that is probably anchored to the outer membrane. PgaB deacetylates a small fraction of the polymer's NAG units. ... |
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PNAG |
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PNAG is produced by the Pga machinery consisting of PgaABCD proteins. Pga complex probably spans the inner and outer bacterial membrane. PgaC and PgaD form an inner membrane-intergrated complex. PgaC is the cataytic glycosyltransferase containing 4-5 predicted transmembrane helices (TMHs). PgaD probably contains two TMHs with a short periplasmic loop and small cytosolic C terminus. PgaA is an outer membrane porin and might associate with PgaB, a periplasmic lipoprotein that is probably anchored to the outer membrane. PgaB deacetylates a small fraction of the polymer's NAG units. ... |
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Quorom sensing (Autoinducer-receptor mechanism) |
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AbaI protein belongs to LuxI autoinducer synthases family. The consensus pattern of the said family is [LMFYA]-R-x(3)- F-x(2)-W-x-[LIVM]-x(6,9)-E-x-D-x-[FY]-D. AbaR belongs to LuxR family, interacting with the AHL molecule and further controls the gene expression of AbaI. ... |
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Quorom sensing (Autoinducer-receptor mechanism) |
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AbaI protein belongs to LuxI autoinducer synthases family. The consensus pattern of the said family is [LMFYA]-R-x(3)- F-x(2)-W-x-[LIVM]-x(6,9)-E-x-D-x-[FY]-D. AbaR belongs to LuxR family, interacting with the AHL molecule and further controls the gene expression of AbaI. ... |
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Quorom sensing (Autoinducer-receptor mechanism) |
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AbaI protein belongs to LuxI autoinducer synthases family. The consensus pattern of the said family is [LMFYA]-R-x(3)- F-x(2)-W-x-[LIVM]-x(6,9)-E-x-D-x-[FY]-D. AbaR belongs to LuxR family, interacting with the AHL molecule and further controls the gene expression of AbaI. ... |
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Quorom sensing (Autoinducer-receptor mechanism) |
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AbaI protein belongs to LuxI autoinducer synthases family. The consensus pattern of the said family is [LMFYA]-R-x(3)- F-x(2)-W-x-[LIVM]-x(6,9)-E-x-D-x-[FY]-D. AbaR belongs to LuxR family, interacting with the AHL molecule and further controls the gene expression of AbaI. ... |
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Quorom sensing (Autoinducer-receptor mechanism) |
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AbaI protein belongs to LuxI autoinducer synthases family. The consensus pattern of the said family is [LMFYA]-R-x(3)- F-x(2)-W-x-[LIVM]-x(6,9)-E-x-D-x-[FY]-D. AbaR belongs to LuxR family, interacting with the AHL molecule and further controls the gene expression of AbaI. ... |
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Quorom sensing (Autoinducer-receptor mechanism) |
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AbaI protein belongs to LuxI autoinducer synthases family. The consensus pattern of the said family is [LMFYA]-R-x(3)- F-x(2)-W-x-[LIVM]-x(6,9)-E-x-D-x-[FY]-D. AbaR belongs to LuxR family, interacting with the AHL molecule and further controls the gene expression of AbaI. ... |
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Quorom sensing (Autoinducer-receptor mechanism) |
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AbaI protein belongs to LuxI autoinducer synthases family. The consensus pattern of the said family is [LMFYA]-R-x(3)- F-x(2)-W-x-[LIVM]-x(6,9)-E-x-D-x-[FY]-D. AbaR belongs to LuxR family, interacting with the AHL molecule and further controls the gene expression of AbaI. ... |
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