METHODS FOR PERFORMING IN VITRO TRANSCRIPTION USING dUTP
A method includes incubation of an amplification mixture containing uracil-DNA glycosy lase enzyme (UNG enzyme), a deoxyribonucleotide triphosphate (dNTP) mixture, a DNA polymerase, a template including a sequence of interest, and at least one primer pair, inactivation of UNG enzyme in the amplification mixture, and amplification of a sequence of interest to form an in vitro transcription template. The in vitro transcription template may be used to produce a therapeutic polynucleotide.
1 - 89 . (canceled)
90 . A method comprising:
incubating an amplification mixture comprising a uracil-DNA glycosylase enzyme (UNG enzyme), a deoxyribonucleotide triphosphate (dNTP) mixture, a DNA polymerase, a template comprising a sequence of interest, and at least one primer pair;
inactivating said UNG enzyme in said amplification mixture;
amplifying said sequence of interest from said template to form an in vitro transcription (IVT) template, said IVT template comprising a uracil-containing polynucleotide sequence corresponding to said sequence of interest; and
performing in vitro transcription (IVT) from said IVT template to produce a therapeutic polynucleotide;
said deoxyribonucleotide triphosphate (dNTP) mixture comprising a dUTP, a modified dUTP, or combinations thereof.
91 . The method of claim 90 , said template comprising a DNA template selected from linear DNA, plasmid DNA, and combinations thereof.
92 . The method of claim 90 , said amplification mixture being substantially free of dTTP.
93 . The method of claim 90 , said amplification mixture comprising a modified dUTP selected from a 5-substituted dUTP analog, a biotinylated dNTP, 5-modified biotin-16-aminoallyl dUTP, hydroxymethyl dUTP (“dITP”), Biotin-UTP, Digoxigenin-UTP, 2′-F-UTP, biotin-4-dUTP, biotin-11-dUTP, biotin-14-dUTP, biotin-16-AA-dUTP, 5-iodo-dUTP, 5-bromo-dUTP, 5-fluoro-dUTP, 5-propynyl-dUTP, and combinations thereof.
94 . The method of claim 90 , said therapeutic polynucleotide comprising a therapeutic agent selected from mRNA, a single-stranded mRNA, a circular RNA, a self-replicating RNA, or combinations thereof.
95 . The method of claim 90 , said contacting; inactivating; and amplifying being performed in a first chamber of a process chip.
96 . The method of claim 90 , the act of performing in vitro transcription (IVT) being performed in a second chamber of the process chip.
97 . An apparatus comprising:
a first chamber to:
incubate a UNG enzyme with an amplification mixture comprising a deoxyribonucleotide triphosphate (dNTP) mixture, a DNA polymerase, a template, and at least one primer pair;
inactivate said UNG enzyme in said amplification mixture;
amplify a polynucleotide sequence of interest from said template to form a uracil-containing polynucleotide; and
a second chamber to:
perform in vitro transcription (IVT) from said uracil-containing polynucleotide to produce a therapeutic polynucleotide.
98 . The apparatus of claim 97 , the apparatus being part of a process chip.
99 . The apparatus of claim 97 , the first chamber and second chamber being part of one process chip.
100 . The apparatus of claim 97 , comprising a controller to drive communication of fluid through the one or more chambers to thereby incubate an amplification mixture until a uracil-containing sequence in said amplification mixture is at least 90% degraded by said UNG enzyme.
101 . The apparatus of claim 97 , comprising a controller to drive communication of fluid through the one or more chambers to thereby inactivate at least 90% of said UNG enzyme.
102 . The apparatus of claim 97 , comprising a controller to drive communication of fluid through the one or more chambers such that said inactivating follows said incubating.
103 . The apparatus of claim 97 , said amplification mixture being substantially free of dTTP.
104 . A system comprising:
one apparatus comprising one or more chambers, said apparatus removably inserted into the system; and
a controller to drive communication of fluid through the one or more chambers to thereby:
incubate uracil-DNA glycosylase (UNG) enzyme with an amplification mixture comprising a deoxyribonucleotide triphosphate (dNTP) mixture, a DNA polymerase, a template material, and at least one primer pair;
inactivate said UNG enzyme in said amplification mixture;
amplify a polynucleotide sequence of interest from said template precursor material to form a uracil-containing polynucleotide; and
perform in vitro transcription (IVT) from said uracil-containing polynucleotide to produce a therapeutic polynucleotide.
105 . The system of claim 104 , said apparatus being part of a process chip.
106 . The system of claim 104 , said controller to drive communication of fluid through the one or more chambers to thereby incubate uracil-DNA glycosylase (UNG) enzyme with the amplification mixture until a uracil-containing sequence in said amplification mixture is at least 90% degraded by said UNG enzyme.
107 . The system of claim 104 , said controller to drive communication of fluid through the one or more chambers to thereby inactivate said UNG enzyme in said amplification mixture after incubating uracil-DNA glycosylase (UNG) enzyme with the amplification mixture.
108 . The system of claim 104 , said controller to drive communication of fluid through the one or more chambers to thereby concentrate said therapeutic polynucleotide.
109 . The system of claim 104 , said controller to drive communication of fluid through the one or more chambers to thereby combine said therapeutic polynucleotide with a delivery vehicle to form a therapeutic polynucleotide composition.