WO9727331A2

Methods and compositions for determining the sequence of nucleic acid molecules

Abstract

Methods and compounds, including compositions therefrom, are provided for determining the sequence of nucleic acid molecules. The methods permit the determination of multiple nucleic acid sequences simultaneously. The compounds are used as tags to generate tagged nucleic acid fragments which are complementary to a selected target nucleic acid molecule. Each tag is correlative with a particular nucleotide and, in a preferred embodiment, is detectable by mass spectrometry. Following separation of the tagged fragments by sequential length, the tags are cleaved from the tagged fragments. In a preferred embodiment, the tags are detected by mass spectrometry and the sequence of the nucleic acid molecule is determined therefrom. The individual steps of the methods can be used in automated format, e.g., by the incorporation into systems.

WO9727331A2, drawing sheet 1
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51 claims: 18 independent, 33 dependent

  1. 1
    Claims We Claim:1. A method for determining the sequence of a nucleic acid molecule, comprising: (a) generating tagged nucleic acid fragments which are complementary to a selected target nucleic acid molecule, wherein a tag is correlative with a particular nucleotide and detectable by non-fluorescent spectrometry or potentiometry;(b) separating the tagged fragments by sequential length;(c) cleaving the tags from the tagged fragments;and (d) detecting the tags by non-fluorescent spectrometry or potentiometry, and therefrom determining the sequence ofthe nucleic acid molecule.
  2. 3
    The method according to claims 1 or 2 wherein the tagged fragments are separated in step (b) by a method selected from gel electrophoresis, capillary electrophoresis, micro-channel electrophoresis and HPLC.
  3. 4
    The method according to claims 1 or 2 wherein the tagged fragments are cleaved in step (c) by a method selected from oxidation, reduction, acid- labile, base-labile, enzymatic, electrochemical, thermal, thiol exchange and photolabile methods.
  4. 7
    The method according to claims 1 or 2 wherein the tagged nucleic acid fragments are generated in step (a) from a 5' terminus to a 3' terminus.
  5. 8
    The method according to claims 1 or 2 wherein step (a) generates more than four of the tagged nucleic acid fragments and each tag is unique for a nucleic acid fragment.
  6. 9
    The method according to claims 1 or 2 wherein steps (b), (c) and (d) are performed in a continuous manner.
  7. 10
    The method according to claims 1 or 2 wherein steps (b), (c) and (d) are performed in a continuous manner on a system.
  8. 11
    1 1. The method according to claims 1 or 2 wherein one or more of the steps is automated.
  9. 12
    The method according to claims 1 or 2 wherein the tagged fragments are generated from oligonucleotide primers that are conjugated to a tag at other than the 3' end ofthe primer.
  10. 13
    The method according to claims 1 or 2 wherein the tagged fragments are generated from tagged dideoxynucleotide terminators.
  11. 14
    The method according to claims 1 or 2 wherein at least one tagged nucleic acid fragment is a compound according to any one of claims 15 to 33.
  12. 15
    A compound of the formula:T ms -L-X wherein, T ms is an organic group detectable by mass spectrometry, comprising carbon, at least one of hydrogen and fluoride, and optional atoms selected from oxygen, nitrogen, sulfur, phosphorus and iodine;L is an organic group which allows a T ms -containing moiety to be cleaved from the remainder of the compound, wherein the T ms -containing moiety comprises a functional group which supports a single ionized charge state when the compound is subjected to mass spectrometry and is selected from tertiary amine, quaternary amine and organic acid;X is a functional group selected from hydroxyl, amino, thiol, carboxylic acid, haloalkyl, and derivatives thereof which either activate or inhibit the activity of the group toward coupling with other moieties, or is a nucleic acid fragment attached to L at other than the 3' end ofthe nucleic acid fragment;with the provisos that the compound is not bonded to a solid support through X nor has a mass of less than 250 daltons.
  13. 31
    A compound according to any one of claims 29 and 30 wherein -Amide-T 5 is selected from:
  14. 32
    A compound according to any of claims 29 and 30 wherein -Amide-T 5 is selected from:/ \ CNH-(C,— C 10 )- -CNH-(C 2 — C 10 )-N P ;o O
  15. 33
    A compound according to any one of claims 25-29 wherein T 2 has the structure which results when one of the following organic acids is condensed with an amine group to form T 2 -C(=O)-N(R')-:Formic acid, Acetic acid, Propiolic acid, Propionic acid, Fluoroacetic acid, 2-Butynoic acid, Cyclopropanecarboxylic acid, Butyric acid, Methoxyacetic acid, Difluoroacetic acid, 4-Pentynoic acid, Cyclobutanecarboxylic acid, 3,3-Dimethylacrylic acid, Valeric acid, N,N-Dimethylglycine, N-Formyl-Gly-OH, Ethoxyacetic acid, (Methylthio)acetic acid, Pyrrole-2-carboxylic acid, 3-Furoic acid, Isoxazole-5-carboxylic acid, trans-3-Hexenoic acid, Trifluoroacetic acid, Hexanoic acid, Ac-Gly-OH, 2-Hydroxy-2-methylbutyric acid, Benzoic acid, Nicotinic acid, 2- Pyrazinecarboxylic acid, 1 -Methyl-2-pyrrolecarboxylic acid, 2-Cyclopentene-l -acetic acid, Cyclopentylacetic acid, (S)-(-)-2-Pyrrolidone-5-carboxylic acid, N-Methyl-L- proline, Heptanoic acid, Ac-b-Ala-OH, 2-Ethyl-2-hydroxybutyric acid, 2-(2- Methoxyethoxy)acetic acid, p-Toluic acid, 6-Methylnicotinic acid, 5-Methyl-2- pyrazinecarboxylic acid, 2,5-Dimethylpyrrole-3-carboxylic acid, 4-Fluorobenzoic acid, 3,5-Dimethylisoxazole-4-carboxylic acid, 3 -Cyclopentylpropionic acid, Octanoic acid, N,N-Dimethylsuccinamic acid, Phenylpropiolic acid, Cinnamic acid, 4-Ethylbenzoic acid, p-Anisic acid, l,2,5-Trimethylpyrrole-3-carboxylic acid, 3-Fluoro-4-methylbenzoic acid, Ac-DL-Propargylglycine, 3-(Trifluoromethyl)butyric acid, 1 -Piperidinepropionic acid, N-Acetylproline, 3,5-Difluorobenzoic acid, Ac-L-Val-OH, Indole-2-carboxylic acid, 2-Benzofurancarboxylic acid, Benzotriazole-5-carboxylic acid, 4-n-Propylbenzoic acid, 3-Dimethylaminobenzoic acid, 4-Ethoxybenzoic acid, 4-(Methylthio)benzoic acid, N-(2- Furoyl)glycine, 2-(Methylthio)nicotinic acid, 3-Fluoro-4-methoxybenzoic acid, Tfa-Gly- OH, 2-Napthoic acid, Quinaldic acid, Ac-L-Ile-OH, 3-Methylindene-2-carboxylic acid, 2- Quinoxalinecarboxylic acid, 1 -Methylindole-2-carboxylic acid, 2,3,6-Trifluorobenzoic acid, N-Formyl-L-Met-OH, 2-[2-(2-Methoxyethoxy)ethoxy]acetic acid, 4-n-Butylbenzoic acid, N-Benzoylglycine, 5-Fluoroindole-2-carboxylic acid, 4-n-Propoxybenzoic acid, 4- Acetyl-3,5-dimethyl-2-pyrrolecarboxylic acid, 3,5-Dimethoxybenzoic acid, 2,6- Dimethoxynicotinic acid, Cyclohexanepentanoic acid, 2-Naphthylacetic acid, 4-(lH- Pyrrol-l-yl)benzoic acid, Indole-3 -propionic acid, m-Trifluoromethylbenzoic acid, 5- Methoxyindole-2-carboxylic acid, 4-Pentylbenzoic acid, Bz-b-Ala-OH, 4- Diethylaminobenzoic acid, 4-n-Butoxybenzoic acid, 3-Methyl-5-CF3-isoxazole-4- carboxylic acid, (3,4-Dimethoxyphenyl)acetic acid, 4-Biphenylcarboxylic acid, Pivaloyl- Pro-OH, Octanoyl-Gly-OH, (2-Naphthoxy)acetic acid, Indole-3 -butyric acid, 4- (Trifluoromethyl)phenylacetic acid, 5-Methoxyindole-3-acetic acid, 4- (Trifluoromethoxy)benzoic acid, Ac-L-Phe-OH, 4-Pentyloxybenzoic acid, Z-Gly-OH, 4- Carboxy-N-(fur-2-ylmethyl)pyrrolidin-2-one, 3,4-Diethoxybenzoic acid, 2,4-Dimethyl-5- CO 2 Et-pyrrole-3-carboxylic acid, N-(2-Fluorophenyl)succinamic acid, 3,4,5- Trimethoxybenzoic acid, N-Phenylanthranilic acid, 3-Phenoxybenzoic acid, Nonanoyl- Gly-OH, 2-Phenoxypyridine-3-carboxylic acid, 2,5-Dimethyl-l-phenylpyrrole-3- carboxylic acid, trans-4-(Trifluoromethyl)cinnamic acid, (5-Methyl-2-phenyloxazol-4- yl)acetic acid, 4-(2-Cyclohexenyloxy)benzoic acid, 5-Methoxy-2-methylindole-3-acetic acid, trans-4-Cotininecarboxylic acid, Bz-5-Aminovaleric acid, 4-Hexyloxybenzoic acid, N-(3-Methoxyphenyl)succinamic acid, Z-Sar-OH, 4-(3,4-Dimethoxyphenyl)butyric acid, Ac-o-Fluoro-DL-Phe-OH, N-(4-Fluorophenyl)glutaramic acid, 4'-Ethyl-4- biphenylcarboxylic acid, 1,2,3,4-Tetrahydroacridinecarboxylic acid, 3- Phenoxyphenylacetic acid, N-(2,4-Difluorophenyl)succinamic acid, N-Decanoyl-Gly- OH, (+)-6-Methoxy-a-methyl-2-naphthaleneacetic acid, 3-(Trifluoromethoxy)cinnamic acid, N-Formyl-DL-Tφ-OH, (R)-(+)-a-Methoxy-a-(trifluoromethyl)phenylacetic acid. Bz-DL-Leu-OH, 4-(Trifluoromethoxy)phenoxyacetic acid, 4-Heptyloxybenzoic acid, 2,3,4-Trimethoxycinnamic acid, 2,6-Dimethoxybenzoyl-Gly-OH, 3-(3,4,5- Trimethoxyphenyl)propionic acid, 2,3,4,5,6-Pentafluorophenoxyacetic acid, N-(2,4- Difluorophenyl)glutaramic acid, N-Undecanoyl-Gly-OH, 2-(4-Fluorobenzoyl)benzoic acid, 5-Trifluoromethoxyindole-2-carboxylic acid, N-(2,4-Difluorophenyl)diglycolamic acid, Ac-L-Tφ-OH, Tfa-L-Phenylglycine-OH, 3-Iodobenzoic acid, 3-(4-n- Pentylbenzoyl)propionic acid, 2-Phenyl-4-quinolinecarboxylic acid, 4-Octyloxybenzoic acid, Bz-L-Met-OH, 3,4,5-Triethoxybenzoic acid, N-Lauroyl-Gly-OH, 3,5- Bis(trifluoromethyl)benzoic acid, Ac-5-Methyl-DL-Tφ-OH, 2-Iodophenylacetic acid, 3- Iodo-4-methylbenzoic acid, 3-(4-n-Hexylbenzoyl)propionic acid, N-Hexanoyl-L-Phe-OH, 4-Nonyloxybenzoic acid, 4'-(Trifluoromethyl)-2-biphenylcarboxylic acid, Bz-L-Phe-OH, N-Tridecanoyl-Gly-OH, 3,5-Bis(trifluoromethyl)phenylacetic acid, 3-(4-n- Heptylbenzoyl)propionic acid, N-Hepytanoyl-L-Phe-OH, 4-Decyloxybenzoic acid, N- (α,α,α-trifluoro-m-tolyl)anthranilic acid, Niflumic acid, 4-(2- Hydroxyhexafluoroisopropyl)benzoic acid, N-Myristoyl-Gly-OH, 3-(4-n- Octylbenzoyl)propionic acid, N-Octanoyl-L-Phe-OH, 4-Undecyloxybenzoic acid, 3- (3,4,5-Trimethoxyphenyl)propionyl-Gly-OH, 8-Iodonaphthoic acid, N-Pentadecanoyl- Gly-OH, 4-Dodecyloxybenzoic acid, N-Palmitoyl-Gly-OH, and N-Stearoyl-Gly-OH.
  16. 34
    A composition comprising a plurality of compounds of the formula:T ms -L-MOI wherein, T ms is an organic group detectable by mass spectrometry, comprising carbon, at least one of hydrogen and fluoride, and optional atoms selected from oxygen, nitrogen, sulfur, phosphorus and iodine;L is an organic group which allows a T^-containing moiety to be cleaved from the remainder of the compound, wherein the T ms -containing moiety comprises a functional group which supports a single ionized charge state when the compound is subjected to mass spectrometry and is selected from tertiary amine, quaternary amine and organic acid;MOI is a nucleic acid fragment wherein L is conjugated to the MOI at a location other than the 3' end of the MOI;and wherein no two compounds have either the same T ms or the same MOL
  17. 40
    A composition comprising water and a compound ofthe formula:T^-L-MOI wherein, T"" is an organic group detectable by mass spectrometry, comprising carbon, at least one of hydrogen and fluoride, and optional atoms selected from oxygen, nitrogen, sulfur, phosphorus and iodine;L is an organic group which allows a T ms -containing moiety to be cleaved from the remainder of the compound, wherein the T '-containing moiety comprises a functional group which supports a single ionized charge state when the compound is subjected to mass spectrometry and is selected from tertiary amine, quaternary amine and organic acid;and MOI is a nucleic acid fragment wherein L is conjugated to the MOI at a location other than the 3' end ofthe MOI;and
  18. 44
    A composition comprising a plurality of sets of compounds, each set of compounds having the formula:T ms -L-MOI wherein, T ms is an organic group detectable by mass spectrometry, comprising carbon, at least one of hydrogen and fluoride, and optional atoms selected from oxygen, nitrogen, sulfur, phosphorus and iodine;L is an organic group which allows a T^-containing moiety to be cleaved from the remainder of the compound, wherein the T ms -containing moiety comprises a functional group which supports a single ionized charge state when the compound is subjected to mass spectrometry and is selected from tertiary amine, quaternary amine and organic acid;MOI is a nucleic acid fragment wherein L is conjugated to the MOI at a location other than the 3' end ofthe MOI;wherein within a set, all members have the same T" s group, and the MOI fragments have variable lengths that terminate with the same dideoxynucleotide selected from ddAMP, ddGMP, ddCMP and ddTMP;and wherein between sets, the T ms groups differ by at least 2 amu.
  19. 48
    A kit for DNA sequencing analysis comprising a plurality of container sets, each container set comprising at least five containers, wherein a first container contains a vector, a second, third, fourth and fifth containers contain compounds ofthe formula:T ms -L-MOI wherein, T" s is an organic group detectable by mass spectrometry, comprising carbon, at least one of hydrogen and fluoride, and optional atoms selected from oxygen, nitrogen, sulfur, phosphorus and iodine;L is an organic group which allows a T ms -containing moiety to be cleaved from the remainder of the compound, wherein the T^-containing moiety comprises a functional group which supports a single ionized charge state when the compound is subjected to mass spectrometry and is selected from tertiary amine, quaternary amine and organic acid;and MOI is a nucleic acid fragment wherein L is conjugated to the MOI at a location other than the 3' end ofthe MOI;such that the MOI for the second, third, fourth and fifth containers is identical and complementary to a portion of the vector within the set of containers, and the T ms group within each container is different from the other T ms groups in the kit.
  20. 51
    A system for determining the sequence of a nucleic acid molecule, comprising a separation apparatus that separates tagged nucleic acid fragments, an apparatus that cleaves from a tagged nucleic acid fragment a tag which is correlative with a particular nucleotide and detectable by electrochemical detection, and an apparatus for potentiostatic amperometry.