Claims
- 1. A method comprising:
performing a plurality of fermentations, each fermentation in a different sample vessel; performing a further processing step on the plurality of fermented samples where the sample is retained in the same sample vessel as the fermentation during the processing step; isolating recombinant proteins expressed during the fermentations after the further processing step; and, crystallizing the isolated recombinant proteins.
- 2. The method of claim 1, wherein the method includes crystallizing tens to thousands of proteins per day.
- 3. The method of claim 1, wherein the crystallized proteins are used to design drug.
- 4. The method of claim 1, wherein a structure of the crystallized proteins are analyzed by x-ray crystallography.
- 5. The method of claim 4, wherein the protein structures are used in computer assisted drug design.
- 6. The method of claim 1, further comprising analyzing on an imaging station more than 1 million images from thousands of the crystallizations.
- 7. The method of claim 1, further comprising identifying crystals from the crystallizations using crystal detecting algorithms.
- 8. The method of claim 1, further comprising using a robot to mount and center about 30 to about 50 crystals per hour with a robot.
- 9. The method of claim 8, wherein the crystals are frozen and then analyzed by X-ray diffraction.
- 10. The method of claim 9, wherein the diffraction data is subject to phasing and refinement calculations and is converted to a three dimensional representation of the protein.
- 11. The method of claim 10, wherein the three dimensional representation of the protein undergoes virtual ligand screening wherein a computerized simulation of the interaction between proteins and potential drugs identifies drug leads for synthesis and/or in vitro and/or in vivo testing.
- 12. A system for processing a plurality of samples comprising:
a first station for performing a plurality of fermentations, each fermentation being performed in a different sample vessel; a second station for performing a further processing step on the plurality of fermented samples where the sample is retained in the same sample vessel as the fermentation during the further processing step; and, means for crystallizing proteins expressed in the samples.
- 13. The system of claim 12, wherein the means is capable of crystallizing hundreds of thousands proteins per day.
- 14. The system of claim 12, wherein the system further comprises means for performing x-ray crystallography.
- 15. The system of claim 12, further comprising means for analyzing on an imaging station as many as 1 million images from as many as 140,000 crystallization experiments set up each day.
- 16. The system of claim 12, further comprising means for identifying crystals with crystal detecting algorithms.
- 17. The system of claim 12, further comprising means for automatically positioning and centering about 30 to about 50 protein crystals per hour with a robot.
- 18. The system of claim 12, wherein the crystals are frozen and analyzed with by X-ray diffraction.
- 19. The system of claim 18, wherein the beamline produces diffraction data that is subject to phasing and refinement calculations and is converted to a three dimensional representation of the protein.
- 20. The system of claim 19, wherein the three dimensional representation of the protein undergoes virtual ligand screening wherein a computerized simulation of the interaction between proteins and potential drugs identifies drug leads for synthesis and/or in vitro and/or in vivo testing.
- 21. A method for producing a purified protein, the method comprising:
performing in a same fermentation apparatus 2 or more separate fermentations where each fermentation comprises cells expressing a protein to be purified and has a fermentation volume of less than 500 mL; and purifying the expressed protein from the separate fermentations.
- 22. A method according to claim 21, wherein amount of protein purified is sufficent to determine crystallization conditions for the protein by submicroliter crystallization experiments.
- 23. A method according to claim 21, wherein each fermentation has a volume of less than 250 mL.
- 24. A method according to claim 21, wherein each fermentation has a volume of less than 150 mL.
- 25. A method according to claim 21, wherein each fermentation has a volume of less than 100 mL.
- 26. A method according to claim 21, wherein at least 3 separate fermentions are performed in a same fermentation apparatus.
- 27. A method according to claim 21, wherein at least 4 separate fermentions are performed in a same fermentation apparatus.
- 28. A method according to claim 21, wherein at least 5 separate fermentions are performed in a same fermentation apparatus.
- 29. A method according to claim 21, wherein at least 10 separate fermentions are performed in a same fermentation apparatus.
- 30. A method according to claim 21, wherein at least 20 separate fermentions are performed in a same fermentation apparatus.
- 31. A method according to claim 30, wherein each fermentation has a volume of less than 150 mL.
- 32. A method according to claim 30, wherein each fermentation has a volume of less than 100 mL.
- 33. A method according to claim 21, wherein at least 40 separate fermentions are performed in a same fermentation apparatus.
- 34. A method according to claim 33, wherein each fermentation has a volume of less than 150 mL.
- 35. A method according to claim 33, wherein each fermentation has a volume of less than 100 mL.
- 36. A method according to claim 21, wherein the 2 or more separate fermentions are coupled to a same gas distribution arrangement.
- 37. A method according to claim 21, wherein the 2 or more separate fermention vessels are held in a same carrier during the fermentation.
- 38. A method according to claim 37, wherein the fermention vessels carrier is portable.
- 39. A method according to claim 21, wherein purifying the expressed protein from the separate fermentations comprises centrifuging the separate fermentations in a same centrifuge head.
- 40. A method according to claim 21, wherein purifying the expressed protein from the separate fermentations comprises centrifuging the separate fermentations in the same fermentation vessels and in a same centrifuge head.
- 41. A method according to claim 21, wherein purifying the expressed protein from the separate fermentations comprises lysing cells in the separate fermentations while in the same fermentation vessels.
- 42. A method according to claim 21, wherein purifying the expressed protein from the separate fermentations comprises lysing cells in the separate fermentations while in the same fermentation vessels in a same centrifuge head.
- 43. A method according to claim 21, wherein purifying the expressed protein from the separate fermentations comprises lysing cells in the separate fermentations and centrifuging the separate fermentations while in the same fermentation vessels in a same centrifuge head.
- 44. A method according to claim 21, wherein the separate fermentations together comprise at least 5 mg of the expressed protein.
- 45. A method according to claim 21, wherein the separate fermentations together comprise at least 10 mg of the expressed protein.
- 46. A method according to claim 21, wherein the separate fermentations together comprise at least 20 mg of the expressed protein.
- 47. A method according to claim 21, wherein the fermentations together comprise at least 30 mg of the expressed protein.
- 48. A method according to claim 21, wherein at least 0.5 mg of the expressed protein is purified to an extent suitable for use in protein crystallization experiments.
- 49. A method according to claim 21, wherein at least 1 mg of the expressed protein is purified to an extent suitable for use in protein crystallization experiments.
- 50. A method according to claim 21, wherein at least 2 mg of the expressed protein is purified to an extent suitable for use in protein crystallization experiments.
- 51. A method for determining crystallization conditions for a protein, the method comprising:
performing in a same fermentation apparatus 2 or more separate fermentations where each fermentation comprises cells expressing a protein to be purified and has a fermentation volume of less than 500 mL; purifying the expressed protein from the separate fermentations; and determining crystallization conditions for the purified protein by submicroliter crystallization experiments.
- 52. A method according to claim 51, the method further comprising obtaining a crystal of the purified protein using the determined crystallization conditions.
- 53. A method according to claim 52, the method further comprising diffracting the crystal of the purified protein.
- 54. A method according to claim 51, wherein at least 10 mg of the protein is purified.
- 55. A method according to claim 51, wherein each fermentation has a volume of less than 250 mL.
- 56. A method according to claim 51, wherein each fermentation has a volume of less than 150 mL.
- 57. A method according to claim 51, wherein each fermentation has a volume of less than 100 mL.
- 58. A method according to claim 51, wherein at least 3 separate fermentions are performed in a same fermentation apparatus.
- 59. A method according to claim 51, wherein at least 4 separate fermentions are performed in a same fermentation apparatus.
- 60. A method according to claim 51, wherein at least 5 separate fermentions are performed in a same fermentation apparatus.
- 61. A method according to claim 51, wherein at least 10 separate fermentions are performed in a same fermentation apparatus.
- 62. A method according to claim 51, wherein at least 20 separate fermentions are performed in a same fermentation apparatus.
- 63. A method according to claim 62, wherein each fermentation has a volume of less than 150 mL.
- 64. A method according to claim 62, wherein each fermentation has a volume of less than 100 mL.
- 65. A method according to claim 51, wherein at least 40 separate fermentions are performed in a same fermentation apparatus.
- 66. A method according to claim 65, wherein each fermentation has a volume of less than 150 mL.
- 67. A method according to claim 65, wherein each fermentation has a volume of less than 100 mL.
- 68. A method according to claim 51, wherein the 2 or more separate fermentions are coupled to a same gas distribution arrangement.
- 69. A method according to claim 51, wherein the 2 or more separate fermention vessels held in a same carrier during the fermentation.
- 70. A method according to claim 51, wherein purifying the expressed protein from the separate fermentations comprises centrifuging the separate fermentations in a same centrifuge head.
- 71. A method according to claim 51, wherein purifying the expressed protein from the separate fermentations comprises centrifuging the separate fermentations in the same fermentation vessels and in a same centrifuge head.
- 72. A method according to claim 51, wherein purifying the expressed protein from the separate fermentations comprises lysing cells in the separate fermentations while in the same fermentation vessels.
- 73. A method according to claim 51, wherein purifying the expressed protein from the separate fermentations comprises lysing cells in the separate fermentations while in the same fermentation vessels in a same centrifuge head.
- 74. A method according to claim 51, wherein purifying the expressed protein from the separate fermentations comprises lysing cells in the separate fermentations and centrifuging the separate fermentations while in the same fermentation vessels in a same centrifuge head.
- 75. A method according to claim 51, wherein the separate fermentations together comprise at least 5 mg of the expressed protein.
- 76. A method according to claim 51, wherein the separate fermentations together comprise at least 10 mg of the expressed protein.
- 77. A method according to claim 51, wherein the separate fermentations together comprise at least 20 mg of the expressed protein.
- 78. A method according to claim 51, wherein the fermentations together comprise at least 30 mg of the expressed protein.
- 79. A method according to claim 51, wherein at least 0.5 mg of the expressed protein is purified to an extent suitable for use in protein crystallization experiments.
- 80. A method according to claim 51, wherein at least 1 mg of the expressed protein is purified to an extent suitable for use in protein crystallization experiments.
- 81. A method according to claim 51, wherein at least 2 mg of the expressed protein is purified to an extent suitable for use in protein crystallization experiments.
CROSS-REFERENCES TO RELATED APPLICATIONS
[0001] This application is a continuation-in-part of U.S. patent application Ser. No. 09/810,020, filed on Mar. 16, 2001, entitled “METHOD AND APPARATUS FOR PERFORMING MULTIPLE PROCESSING STEPS ON A SAMPLE IN A SINGLE VESSEL,” by Downs, the disclosure of which is incorporated by reference. The present application claims priority to and the benefit of this related application, pursuant to 35 U.S.C. §119, 35 U.S.C. §120, and any other applicable statute or rule.
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
09810020 |
Mar 2001 |
US |
Child |
10101491 |
Mar 2002 |
US |