Compositions and methods for accurately identifying mutations
The present disclosure provides compositions and methods for accurately detecting mutations by uniquely tagging double stranded nucleic acid molecules with dual cyphers such that sequence data obtained from a sense strand can be linked to sequence data obtained from an anti-sense strand when sequenced, for example, by massively parallel sequencing methods.
1. A double-stranded nucleic acid molecule library, comprising a plurality of target nucleic acid molecules and a plurality of random double-stranded cyphers,
wherein the nucleic acid library comprises nucleic acid molecules having a formula of 5′-RE1-PS1-X a -PS2-Y-PS2-X b -PS1-RE2-3′,
wherein RE1 is a first restriction endonuclease recognition sequence, PS1 is a first nucleic acid molecule priming site, PS2 is a second nucleic acid molecule priming site, RE2 is a second restriction endonuclease recognition sequence, Y comprises a target nucleic acid molecule, and X a and X b each comprise a first and second random cypher, respectively, wherein each cypher has a length ranging from about 6 nucleotides to about 9 nucleotides or has a length of about 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, or 15 nucleotides, and
wherein the double-stranded X a cypher is identical to the X b cypher for one or more target nucleic acid molecules, provided that the double-stranded cypher for each target nucleic molecule is different.
2. The double-stranded nucleic acid library of claim 1 wherein the plurality of double-stranded random cyphers each have the same number of nucleotides and comprise a length of about 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, or 150 nucleotides.
3. The double-stranded nucleic acid library of claim 1 wherein the target nucleic acid molecules comprise a length ranging from about 10 nucleotides to about 10,000nucleotides or a length ranging from about 100 nucleotides to about 1,000 nucleotides.
4. The double-stranded nucleic acid library of claim 1 wherein the first restriction endonuclease recognition sequence RE1 and the second restriction endonuclease recognition sequence RE2 are the same.
5. The double-stranded nucleic acid library of claim 1 wherein the nucleic acid molecules having a formula of 5′-RE1-PS1-X a -PS2-Y-PS2-X b -PS1-RE2-3′ are each contained in a self-replicating vector.
6. The double-stranded nucleic acid library of claim 5 wherein the self-replicating vector is a plasmid, cosmid, YAC, or viral vector.