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References

1
Fischer, E. H. and Krebs, E. G. 1990, Biochim. Biophys. Acta 1000.

2
Cohen, P. 1989, Annu. Rev. Biochem. 58, 453-508.

3
Krebs, E.G. 1986, The Enzymes, (Boyer, P.D. And Krebs, E.G., Eds., 3rd Edit.) 17, 3-20.

4
Huang, J.M., Wei, Y.F., Kim, Y.H., Osterberg, L. and Matthews, H.R. 1991, J. Biol. Chem. 266, 9023-9031.

5
Stock, J.B., Stock, J.B. and Mottonen, J.M. 1990, Nature (London) 344, 395-400.

6
Cozzone, A.J. 1988, Ann. Rev. Microbiol 42, 97-125.

7
Lindberg, R.A., Quinn, A.M. and Hunter, T. 1992, Trends Biochem. Sci. 17, 114-119.

8
Bollen, M. and Stalmans, W. 1992, Crit. Rev. Biochem. Mol. Biol. 27, 227-281.

9
Cohen, P.T.W, Brewis, N.D., Hughes, V. and Mann, D.J. 1990, FEBS Lett. 268, 355-359.

10
Cohen, P.T.W. 1991, Methods Enzymol. 201, 398-408.

11
Chen, M.X., Chen, Y.H. and Cohen, P.T.W. 1992, FEBS Lett. 306, 54-58.

12
Arndt, K.T., Styles, C.A. and Fink, G.R. 1989, Cell 56, 527-537.

13
Fischer, E.H., Charbonneau, H. and Tonks, N.K. 1991, Science 253, 401-406.

14
Blundell, T. L., Sibanda, B. L., Sternberg, M. J. E. and Thornton, J. 1987, Nature (London) 326, 347-352.

15
Johnson, D. A. and Barton, G. J. 1992, Protein Science 1, 370-377.

16
Holley, H. L. and Karplus, M. 1989, Proc. Natl. Acad. Sci. USA 86, 152-156.

17
Zvelebil, M. J. J. M., Barton, G. J., Taylor, W. R. and Sternberg, M. J. E. 1987, J. Mol. Biol. 195, 957-961.

18
Crawford, I. P., Niermann, T. and Kirchner, K. 1987, Proteins: Struct., Funct., Genet. 2, 118-129.

19
Barton, G. J., Newman, R. H., Freemont, P. F. and Crumpton, M. J. 1991, Eur. J. Biochem. 198, 749-760.

20
Russell, R. B., Breed, J. and Barton, G. J. 1992, FEBS Lett. 304, 15-20.

21
Benner, S. A. and Gerloff, D. 1990, Adv. Enz. Regul. 31, 121-181.

22
Barton, G. J. and Russell, R. B. 1993, Nature (London) 361, 505-506.

23
Pascarella, S. and Argos, P. 1992, J. Mol. Biol. 224, 461-471.

24
Needleman, S. B. and Wunsch, C. D. 1970, J. Mol. Biol. 48, 443-453.

25
Barton, G. J. 1990, Methods Enzymol. 183, 403-428.

26
Barton, G. J. and Sternberg, M. J. E. 1987, J. Mol. Biol. 198, 327-337.

27
Smith, T. F. and Waterman, M. S. 1981, J. Mol. Biol. 147, 195-197.

28
Barton, G. J. 1993, Comput. Appl. Biosci. 9, 729-734.

29
Livingstone, C. D. and Barton, G. J. 1993, Comput. Appl. Biosci. 9, 745-756.

30
Wilmot, A. C. M. and Thornton, J. M. 1988, J. Mol. Biol. 203, 221-232.

31
Rose, G. D. 1978, Nature (London) 272, 586-591.

32
Garnier, J., Osguthorpe, D. J. and Robson, B. 1978, J. Mol. Biol. 120, 97-120.

33
Lim, V.I. 1974, J. Mol. Biol. 88, 873-894.

34
Chou, P. Y. and Fasman, G. D. 1978, Adv. Enzymol. 47, 45-148.

35
Barton, G. J. 1993, Protein Eng. 6, 37-40.

36
Chen, M. X., Chen, Y. H. and Cohen, P. T. W. 1993, Eur. J. Biochem.

37
Chen, M. X., Chen, Y. H. and Cohen, P. T. W. 1993, Eur. J. Biochem. 216, 269-279.

38
Hughes, V., Muller, A., Stark, M. J. R. and W., Cohen P. T. 1993, Eur. J. Biochem. 216, 269-278.

39
Gribskov, M., McLachlan, A. D. and D., Eisenberg. 1987, Proc. Natl. Acad. Sci. USA 84.

40
Blanchin-Roland, S., Blanquet, S., Schmitter, J. M. and Fayat, G. 1986, Mol. Gen. Genet 205, 515-522.

41
Brewis, N.D., Street, A. J., Prescott, A.R. and Cohen, P.T.W. 1993, EMBO J. 12, 987-996.

42
Cohen, P.T.W. and Cohen, P. 1989, Biochem. J. 260, 931-934.

43
Zhou, S., Clemens, J. C., Hakes, D. J., Barford, D. and Dixon, J.E. 1993, J. Biol. Chem., In press.

44
Fersht, A. Enzyme Structure and Mechanism - Second Edition, pages 27-29. W. H. Freeman and Company, 1985.

45
Johnson, L.N. 1984, Inclusion Compounds, (Atwood, J.L. And Davies, J.E.D. And Macnicol , D. Eds) Academic Press, London pages 509-569.

46
ad P. T. van Duijnen, W. G. Hol and Berendsen, H. J. 1978, Nature (London) 273, 443-446.

47
Martin, B. L. and Graves, D. J. 1993, Archives Biochemistry Biophysics - Submitted.

48
Schwartz, J.H. and Lipmann, F. 1961, Proc. Natl. Acad. Sci. USA 47, 1996-2005.

49
Guan, K.L. and Dixon, J.E. 1991, J. Biol. Chem. 266, 17026-17030.

50
Zhang, Z.-Y., Davis, J.P. and Van Etten, R.L. 1992, Biochemistry 31, 1701-1711.

51
Ostanin, K., Harms, E.H., Stevis, P.E., Kuciel, R., Zhou, M.-M. and Van Etten, R.L. 1992, J. Biol. Chem. 267, 22830-22836.

52
Vincent, J.B., Crowder, M.W. and Averill, B.A. 1991, J. Biol. Chem. 266, 17737-17740.

53
Kim, E.E. and Wyckoff, H.W. 1991, J. Mol. Biol. 218, 449-464.

54
Yan, S.C.B. and Graves, D.J. 1982, Mol. Cell Biol. 42, 21-29.

55
King, M.M. and Huang, C.Y. 1984, J. Biol. Chem. 259, 8847-8856.

56
Rao, J. and Wang, J.H. 1989, J. Biol. Chem 264, 1058-1061.

57
Vincent, J.B. and Averill, B.A. 1990, FEBS Lett. 263, 265-268.

58
Alessi, D.R., Street, A. J., Cohen, P. and Cohen, P.T.W. 1993, Eur. J. Biochem (in press).

59
Zhang, Z., Bai, G., Deans-Zirattu, S., Browner, M.F. and Lee, E.Y.C. 1992, J. Biol. Chem. 267, 1484-1490.

60
Berndt, N. and Cohen, P.T.W. 1990, Eur. J. Biochem. 190, 291-297.

61
Ingebritsen, T.S., Stewart, A.A. and Cohen, P. 1983, Eur. J. Biochem. 132, 297-307.

62
Wang, Z., Ming, L.-J. Que, L. Jr., Vincent, J.B., Crowder, M. W. and Averill, B.A. 1992, Biochemistry 31, 5263-5268.

63
Rost, B., Schneider, R. and Sander, C. 1993, Trends Biochem. Sci. pages 120-123.

64
Kroger, M. and Hobom, G. 1982, Gene 20, 25-38.

65
Liu, Y. S., Ishii, M., Tokai, H., Tsutsumi, O., Ohki, R., Akada, K., Tanaka, E., Tsuchiya, S., Fukui and Miyakawa, T. 1991, Mol. Gen. Genet 227, 52-59.

66
Cyert, M. S., Kunisawa, R., Kaim, D. and Thorner, J. 1991, Proc. Nat Acad Sci. 88, 7376-7380.

67
Guerini, D. and Klee, C.B. 1989, Proc. Natl. Acad. Sci. USA 1989, 9183-9187.

68
McPartlin, A.E., Barker, H.M. and Cohen, P.T.W. 1991, Biochim. Biophys. Acta. 1088, 308-310.

69
Kuno, T., Takeda, T., Hirai, M., Ito, A., Mukai, H. and Tanaka, C. 1989, Biochem. Biophys. Res Com. 165, 1352-1358.

70
Sneddon, A.A., Cohen, P.T.W. and Stark, M.J.R. 1990, EMBO J. 9, 4339-4346.

71
Kinoshita, N., Ohkura, H. and Yanagida, M. 1990, Cell 63, 405-415.

72
da Cruz e Silva, O.B. and Cohen, P.T.W. 1987, FEBS Lett. 226, 176-178.

73
Stone, S. R., Hofsteenge and Hemmings, B. A. 1987, Biochemistry 26, 7215-7220.

74
da Cruz e Silva, O.B., Alemany, S., Cambell, D.G. and Cohen, P. T.W. 1987, FEBS Lett. 221, 415-422.

75
Green, D. D, Yang, S.I. and Mumby, M. C. 1987, Proc. Natl. Acad. Sci. USA 84, 4880-4884.

76
Orgad, S., Brewis, N.D., Alphey, L., Axton, J.M., Dudai, Y. and Cohen, P.T.W. 1990, FEBS Lett. 275, 44-48.

77
MacKintosh, R.W., Haycox, G., Hardie, D.G. and Cohen, P.T. W. 1990, FEBS Lett. 276, 156-160.

78
Brewis, N.D. and Cohen, P.T.W. 1992, Biochim. Biophys. Acta 1171, 231-233.

79
Brewis, N. D. PhD thesis, University of Dundee, Scotland, UK., 1993.

80
Ronne, H., Carlberg, M., Hu, G-Z. and Nehlin, J.O. 1991, Mol. Cell. Biol. 11, 4876-4884.

81
Ohkura, H., Kinoshita, N., Miyatani, S., Toda, T. and Yanagida, M. 1989, Cell 57, 997-1007.

82
Sasaki, K., Shima, H., Kitagawa, Y., Irino, S., Sugimura, T. and Nagao, M. 1990, Jpn. J. Cancer Res. 81, 1272-1280.

83
Doonan, J.H and Morris, N.R. 1989, Cell 57, 987-996.

84
Dombradi, V., Mann, D.J, Saunders, R.D. and Cohen, P.T.W. 1993, Eur. J. Biochem 212, 177-183.

85
Berndt, N., Campbell, D.G., Caudwell, F.B., Cohen, P., da Cruz e Silva, E.F., da Cruz e Silva, O.B. and Cohen, P.T.W. 1987, FEBS Lett. 223, 340-346.

86
Nitschke, K., Flieg, U., Schell, J. and Palme, K. 1992, EMBO J. 11.

87
Dombradi, V., Axton, J.M., Brewis, N.D., da Cruz e Silva, E.F., Alphey, L. and P.T.W., Cohen. 1990, Eur. J. Biochem 194, 739-745.

88
Dombradi, V., Axton, J.M., Glover, D.M. and Cohen, P.T.W. 1989a, Eur. J. Biochem. 183, 603-610.

89
Smith, R.D. and Walker, J.C. 1991, Plant Physiol. 97, 677-683.

90
Dombradi, V., Axton, J.M., Glover, D.M. and Cohen, P.T.W. 1989b, FEBS Lett. 247, 391-395.

91
Evers, R. and Cornelissen, W. C. A. 1990, Nucl. Acid. Res. 18, 5089-5090.

92
Cohen, P.T.W. 1990, Genetics And Human Nutrition, (Ed. Randle, P.J. Bell, J.I. And Scott, J.) John Libby pages 27-40.

PP2B S.c CMP2 [66][65],
PP2B S.c CMP1 [66][65],
PP2B beta1 H [67],
PP2B beta3 [68],
PP2B beta2 H [67],
PP2B beta2 Rt [69],
PP2B alpha1 Rt [69],
PP2A S.c PPH22 [70],
PP2A S.c PPH21 [70],
PP2A S.p ppa2 [71],
PP2A S.p ppa1 [71],
PP2A beta Rb [72],
PP2A beta P [73],
PP2A alpha B Rb P [73][75][74],
PP2A 28d D.m [76],
PP2A B.napus [77],
SIT4 S.c [12],
PP4 (PPX) H [78],
PP4 (PPX) Rb [41],
PP4 D.m [79],
PPV D.m [9],
PPH3 S.c [80],
PP1 S.c DIS2 [81],
PP1 gamma Rt [82], PP1 m1 M [81],
PP1 A.nidulans [83],
PP1 S.p dis2 [81],
PP1 13C D.m [84],
PP1 alpha Rb [85],
PP1 A.thialana [86],
PP1 96A D.m [87],
PP1 S.p sds21 [81],
PP1 87B D.m [88],
PP1 beta Rb Rt [82][87] PP1 m2 M [81],
PP1 9C D.m [87],
PP1 Z.mays [89],
PPY 55A D.m [90],
PP1 T.brucei [91],
PP1 B.napus [77],
PPZ1 S.c [92],
PPQ S.c [36],
PPZ2 S.c [38][9],
PP5 H (A.E. McPartlin, H.M. Barker and P.T.W. Cohen, in preparation) (1)
PPT S.c (M. X. Chen, Y.H. Chen and P.T.W. Cohen, in preparation) (2)


gjb@bioch.ox.ac.uk