Method for assembly of a polynucleotide encoding a target polypeptide
First Claim
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1. A method of assembling a double-stranded polynucleotide comprising:
- (a) selecting a partially double-stranded initiating oligonucleotide, wherein said initiating oligonucleotide comprises a at least one overhang;
(b) contacting said partially double-stranded initiating oligonucleotide with a next most terminal double-stranded oligonucleotide, wherein said next most terminal double-stranded oligonucleotide is contiguous with the initiating oligonucleotide and comprises at least one overhang, and wherein at least one overhang of said next most terminal double-stranded oligonucleotide is complementary to at least one overhang of said initiating oligonucleotide;
(c) repeating (b) to sequentially add the next most terminal double-stranded oligonucleotide to the extended initiating oligonucleotide, whereby said double-stranded polynucleotide is synthesized.
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Abstract
The present invention provides a novel approach to utilizing the results of genomic sequence information by computer-directed polynucleotide assembly based upon information available in databases such as the human genome database. Specifically, the present invention can be used to select, synthesize and assemble a novel, synthetic target polynucleotide sequence encoding a target polypeptide. The target polynucleotide can encode a target polypeptide that exhibits enhanced or altered biological activity as compared to a model polypeptide encoded by a natural (wild-type) or model polynucleotide sequence.
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Citations
23 Claims
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1. A method of assembling a double-stranded polynucleotide comprising:
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(a) selecting a partially double-stranded initiating oligonucleotide, wherein said initiating oligonucleotide comprises a at least one overhang;
(b) contacting said partially double-stranded initiating oligonucleotide with a next most terminal double-stranded oligonucleotide, wherein said next most terminal double-stranded oligonucleotide is contiguous with the initiating oligonucleotide and comprises at least one overhang, and wherein at least one overhang of said next most terminal double-stranded oligonucleotide is complementary to at least one overhang of said initiating oligonucleotide;
(c) repeating (b) to sequentially add the next most terminal double-stranded oligonucleotide to the extended initiating oligonucleotide, whereby said double-stranded polynucleotide is synthesized. - View Dependent Claims (3)
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2. The method of 1, wherein said initiating oligonucleotide in step (a) has a 3′
- and a 5′
overhang
- and a 5′
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4. A method of assembling a target polynucleotide comprising:
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(a) providing a target polynucleotide sequence;
(b) identifying at least one partially double-stranded initiating oligonucleotide present in said target polynucleotide, wherein said initiating oligonucleotide comprises a 5′
overhang and a 3′
overhang;
(c) identifying a next most terminal double-stranded oligonucleotide present in said target polynucleotide, wherein said next most terminal double-stranded oligonucleotide is contiguous with the initiating oligonucleotide and comprises a 5′
overhang and a 3′
overhang, wherein at least one overhang of said next most terminal double-stranded oligonucleotide is complementary to at least one overhang of said initiating oligonucleotide;
(d) contacting said initiating oligonucleotide with said next most terminal double-stranded oligonucleotide under such conditions and for such time suitable for annealing, wherein said initiating sequence is extended; and
(e) repeating (a) through (d) to sequentially add the next most terminal double-stranded oligonucleotide to the extended initiating oligonucleotide, whereby a target polynucleotide is synthesized. - View Dependent Claims (5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18)
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19. A method of assembling a double-stranded polynucleotide, comprising:
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(a) chemically synthesizing a first set of oligonucleotides of at least 25 bases comprising a first strand of a double-stranded polynucleotide;
(b) chemically synthesizing a second set of oligonucleotides of at least 25 bases comprising a second complementary strand of said double-stranded polynucleotide, each of said oligonucleotides within said second set of said oligonucleotides overlapping with at least one oligonucleotide within said first set of said oligonucleotides; and
(c) annealing said first and second sets of oligonucleotides to produce a double-stranded polynucleotide in the absence of enzymatic synthesis. - View Dependent Claims (20, 21)
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22. A method of assembling a double-stranded polynucleotide, comprising:
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(a) chemically synthesizing a first set of oligonucleotides comprising a first strand of a double-stranded polynucleotide;
(b) chemically synthesizing a second set of oligonucleotides comprising a second complementary strand of said double-stranded polynucleotide, each of said oligonucleotides within said second set of said oligonucleotides overlapping with at least one oligonucleotide within said first set of said oligonucleotides; and
(c) annealing in the presence of MutS protein said first and second sets of oligonucleotides to assemble a double-stranded polynucleotide.
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23. A method of assembling a double-stranded polynucleotide comprising:
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(a) chemically synthesizing a first set of oligonucleotides comprising a first strand of a double-stranded polynucleotide;
(b) chemically synthesizing a second set of oligonucleotides comprising a second complementary strand of said double-stranded polynucleotide, each of said oligonucleotides within said second set of said oligonucleotides overlapping with at least one oligonucleotide within said first set of said oligonucleotides, and (c) annealing said first and second sets of oligonucleotides to produce a partially double-stranded component polynucleotide;
(d) repeating steps (a) through (c) to prepare a series of partially double-stranded component polynucleotides;
(e) selecting at least one partially double-stranded component polynucleotide present in said target polynucleotide to serve as the initiating polynucleotide, wherein said initiating polynucleotide comprises a 5′
overhang and a 3′
overhang;
(f) adding the next most terminal component polynucleotide, wherein said next most terminal component polynucleotide comprises at least one overhang that is complementary to at least one overhang of the initiating polynucleotide;
(g) contacting said initiating polynucleotide with said next most terminal component polynucleotide under such conditions and for such time suitable for annealing; and
(h) optionally repeating (e) through (g) to sequentially add said next most terminal component polynucleotide to the extended initiating polynucleotide, whereby a target polynucleotide is assembled in the absence of enzymatic polymerization.
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Specification