IP Library › Granted Patent US 8,758,744
Granted Patent B2
US 8,758,744 · App. 12/213,839 · Granted Jun 24, 2014

Prebiotic composition or pharmaceutical composition synthesized from catalytic domains producing highly α-1,2 branched dextran

Inventors: Sophie Anne Michèle Bozonnet (Gagnac-sur-Garonne, FR); Magali Martine Claude Remaud-Simeon (Ramonville-Saint-Agne, FR); René—Marc Lucien Willemot (Pompertuzat, FR); Pierre Emmanuel Frédéric Monsan (Mondonville, FR)
Assignee: Institut National des Sciences Appliquees (INSA)
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Quick Facts
Patent No.
US 8,758,744
App. No.
12/213,839
Granted
Jun 24, 2014
Kind
B2
Abstract

The invention relates to an isolated polypeptide with an glycosyl transferase enzymatic activity for producing dextrans with .alpha.(1.fwdarw.2) sidechains, comprising at least one region for bonding to glucan and a catalytically active region situated beyond the region bonding to glucan. The invention further relates to polynucleotides coding for said enzymes and vectors containing the same.

Claims (27)

1. A prebiotic composition synthesized from an isolated polypeptide having an enzymatic glycosyltransferase activity capable of forming dextrans having α(1→2) linkages from saccharose, α-D-fluoroglucose, paranitrophenyl-α-D glucopyranoside, α-D-glucopyranoside-α-D sorbofuranoside or 4-O-α-D galactopyranosylsucrose, wherein said isolated polypeptide has at least one glucan binding domain and a catalytic activity domain located downstream of the glucan binding domain; and

a suitable carrier;

wherein said polypeptide is obtained by

inserting a nucleic acid sequence comprising: a) two sequences encoding catalytic domains having at least 90% identity with SEQ ID NO: 3; and b) a sequence encoding the glucan binding domain, the latter being located between the two sequences in a) into a host cell; and

purifying the polypeptide from a cell extract wherein said polypeptide retains its enzymatic activity.

2. The prebiotic composition according to claim 1 , wherein the host cell is a prokaryote selected from the group comprising E. coli, Lactococci and Bacilli and Leuconostocci.

3. The prebiotic composition according to claim 1 , wherein the host cell is a eukaryote selected from a group comprising yeasts, fungi and plants.

4. A pharmaceutical or dermatological composition synthesized from an isolated polypeptide having an enzymatic glycosyltransferase activity capable of forming dextrans having α(1→2) linkages from saccharose, α-D-fluoroglucose, paranitrophenyl-α-D glucopyranoside, α-D-glucopyranoside-α-D sorbofuranoside or 4-O-α-D galactopyranosylsucrose, wherein said isolated polypeptide has at least one glucan binding domain and a catalytic activity domain located downstream of the glucan binding domain; and

a suitable carrier;

wherein said polypeptide is obtained by

i) inserting a nucleic acid sequence comprising: a) two sequences encoding catalytic domains having at least 90% identity with SEQ ID NO: 3; and b) a sequence encoding the glucan binding domain, the latter being located between the two sequences in a) into a host cell; and

ii) purifying the polypeptide from a cell extract wherein said polypeptide retains its enzymatic activity.

5. The pharmaceutical or dermatological composition according to claim 4 , wherein the host cell is a prokaryote selected from the group comprising E. coli, Lactococci and Bacilli and Leuconostocci.

6. The pharmaceutical or dermatological composition according to claim 4 , wherein the host cell is a eukaryote selected from a group comprising yeasts, fungi and plants.

7. A prebiotic composition synthesized from an isolated polypeptide having an enzymatic glycosyltransferase activity capable of forming dextrans having α(1→2) linkages from saccharose, α-D-fluoroglucose, paranitrophenyl-α-D glucopyranoside, α-D-glucopyranoside-α-D sorbofuranoside or 4-O-α-D galactopyranosylsucrose, wherein said isolated polypeptide has at least one glucan binding domain and a catalytic activity domain located downstream of the glucan binding domain; and

a suitable carrier; wherein said polypeptide is obtained by

i)inserting a nucleic acid sequence comprising a) two sequences encoding catalytic domains comprising SEQ ID NO: 3 and b) a nucleotide sequence encoding the glucan binding domain, the nucleotide sequence encoding the glucan binding domain being located between the two sequences in a) into a host cell; and

ii) purifying the polypeptide from a cell extract.

8. The prebiotic composition according to claim 7 , wherein the host cell is a prokaryote selected from the group comprising E. coli, Lactococci and Bacilli and Leuconostocci.

9. The prebiotic composition according to claim 7 , wherein the host cell is a eukaryote selected from a group comprising yeasts, fungi and plants.

10. A pharmaceutical or dermatological composition synthesized from an isolated polypeptide having an enzymatic glycosyltransferase activity capable of forming dextrans having α(1→2) linkages from saccharose, α-D-fluoroglucose, paranitrophenyl-α-D glucopyranoside, α-D-glucopyranoside-α-D sorbofuranoside or 4-O-α-D galactopyranosylsucrose, wherein said isolated polypeptide has at least one glucan binding domain and a catalytic activity domain located downstream of the glucan binding domain; and

a suitable carrier;

wherein said polypeptide is obtained by

i) inserting a nucleic acid sequence comprising a) two sequences encoding catalytic domains comprising SEQ ID NO: 3 and b) a nucleotide sequence encoding the glucan binding domain, the nucleotide sequence encoding the glucan binding domain being located between the two sequences in a) into a host cell; and

ii) purifying the polypeptide from a cell extract.

11. The prebiotic composition according to claim 10 , wherein the host cell is a prokaryote selected from the group comprising E. coli, Lactococci and Bacilli and Leuconostocci.

12. The prebiotic composition according to claim 10 , wherein the host cell is a eukaryote selected from a group comprising yeasts, fungi and plants.

Priority Claims (2)
FR 01 03631 · Mar 16, 2001 · national
FR 01 16495 · Dec 19, 2001 · national
Continuity (2)
Division 10509024
Related Publication 20090123448A1 · May 14, 2009