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01/26/06 - USPTO Class 435 |  101 views | #20060019357 | Prev - Next | About this Page  435 rss/xml feed  monitor keywords

Nucleotide sequences which code for the rpsl gene

Title: Nucleotide sequences which code for the rpsl gene


Related Patent Categories: Chemistry: Molecular Biology And Microbiology, Micro-organism, Tissue Cell Culture Or Enzyme Using Process To Synthesize A Desired Chemical Compound Or Composition, Preparing Alpha Or Beta Amino Acid Or Substituted Amino Acid Or Salts Thereof, Lysine; Diaminopimelic Acid; Threonine; Valine

Brief Patent Description - Full Patent Description - Patent Claims

The Patent Description & Claims data below is from USPTO Patent Application 20060019357, Nucleotide sequences which code for the rpsl gene.


1-40. (canceled)

41. An isolated polynucleotide which consists of at least 20 consecutive bases of a fragment of SEQ ID NO: 1 or a fragment of the full complement of SEQ ID NO: 1.

42. The polynucleotide of claim 41, which consists of a fragment of SEQ ID No: 1.

43. The polynucleotide of claim 41, which consists of a fragment of the full complement of SEQ ID NO: 1.

44. The polynucleotide of claim 41 which consists of at least 20 consecutive bases of a fragment between bases 1-499 of SEQ ID NO: 1 or the full complement thereof.

45. The polynucleotide of claim 41 which consists of at least 20 consecutive bases of a fragment between bases 500-883 of SEQ ID NO: 1 or the full complement thereof.

46. The polynucleotide of claim 41 which consists of at least 20 consecutive bases of a fragment between bases 884-1775 of SEQ ID NO: 1 or the full complement thereof.

47. The polynucleotide of claim 41 which consists of at least 30 consecutive bases of a fragment of SEQ ID NO: 1 or the full complement thereof.

48. The polynucleotide of claim 41 which consists of at least 50 consecutive bases of a fragment of SEQ ID NO: 1 or the full complement thereof.

49. The polynucleotide of claim 41 which consists of at least 100 consecutive bases of a fragment of SEQ ID NO: 1 or the full complement thereof.

50. A hybridization probe which comprises the polynucleotide of claim 41.

51. An array, microarray or chip to which the polynucleotide of claim 41 has been applied.

52. A primer which comprises the polynucleotide of claim 41.

53. A vector comprising the polynucleotide of claim 42.

54. A vector comprising the polynucleotide of claim 43.

55. A host cell transformed with the polynucleotide of claim 42.

56. A host cell transformed with the polynucleotide of claim 43.

57. A method for identifying a polynucleotide sequence which encodes a ribosomal S12 polypeptide comprising: contacting a polynucleotide sample with the probe of claim 50, isolating a polynucleotide sequence which binds to said probe, and determining whether said polynucleotide sequence encodes a polypeptide having the activity of the ribosomal S12 polypeptide.

58. A method for identifying a polynucleotide sequence which encodes a ribosomal S12 polypeptide comprising: contacting a polynucleotide sample with at least one primer of claim 52 under conditions suitable for amplification of polynucleotides encoding a ribosomal S12 polypeptide by the polymerase chain reaction, isolating an amplified polynucleotide sequence, and determining whether said polynucleotide sequence encodes a polypeptide having the activity of the ribosomal S12 polypeptide.

59. An isolated polynucleotide which consists of at least 20 consecutive bases of a fragment of SEQ ID NO: 3 or a fragment of the full complement of SEQ ID NO: 3.

60. The polynucleotide of claim 59, which consists of a fragment of SEQ ID NO: 3.

61. The polynucleotide of claim 59, which consists of a fragment of the full complement of SEQ ID NO: 3.

62. The polynucleotide of claim 59 which consists of at least 30 consecutive bases of a fragment of SEQ ID NO: 3 or the full complement thereof.

63. The polynucleotide of claim 59 which consists of at least 50 consecutive bases of a fragment of SEQ ID NO: 3 or the full complement thereof.

64. The polynucleotide of claim 59 which consists of at least 100 consecutive bases of a fragment of SEQ ID NO: 3 or the full complement thereof.

65. A hybridization probe which comprises the polynucleotide of claim 59.

66. An array, microarray or chip to which the polynucleotide of claim 59 has been applied.

67. A primer which comprises the polynucleotide of claim 59.

68. A vector comprising the polynucleotide of claim 60.

69. A vector comprising the polynucleotide of claim 61.

70. A host cell transformed with the polynucleotide of claim 60.

71. A host cell transformed with the polynucleotide of claim 61.

72. A method for identifying a polynucleotide sequence which encodes a ribosomal S12 polypeptide comprising: contacting a polynucleotide sample with the probe of claim 65, isolating a polynucleotide sequence which binds to said probe, and determining whether said polynucleotide sequence encodes a polypeptide having the activity of the ribosomal S12 polypeptide.

73. A method for identifying a polynucleotide sequence which encodes a ribosomal S12 polypeptide comprising: contacting a polynucleotide sample with at least one primer of claim 67 under conditions suitable for amplification of polynucleotides encoding a ribosomal S12 polypeptide by the polymerase chain reaction, isolating an amplified polynucleotide sequence, and determining whether said polynucleotide sequence encodes a polypeptide having the activity of the ribosomal S12 polypeptide.

Brief Patent Description - Full Patent Description - Patent Claims

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Polynucleotides encoding polypeptides involved in intermediates metabolism of the central metabolic pathway in methylophilus methylotrophus
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