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1997 | 44 | 4 |

Tytuł artykułu

Prostatic acid phosphatase: structural aspects of inhibition by L-[plus]-tartrate ions

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
The crystal structure of the complex between rat-prostatic acid phosphatase (PAP) and L-(+)-tartrate (Lindqvist et al., J. Biol. Chem., 1993, 268, 20744-20746) contains the model of the ligand with incorrect chirality. We report here the correct model and discuss the relation between this model and the model of the inhibitory complexes between PAP and oxy-anions.

Wydawca

-

Rocznik

Tom

44

Numer

4

Opis fizyczny

p.673-678,fig.

Twórcy

autor
  • University of South Carolina, Columbia, SC 29208, USA
autor
autor
autor
autor
autor

Bibliografia

  • Abul-Fadl, A.M. & King, E.J. (1949) Properties of acid phosphatases of erythrocytes and of the human prostate gland. Biochem. J. 45, 51-60.
  • Akino, H., Tsuka. H., Okada, K, Tsuchiya, Y., Matsubara, M. & Arimura, K. (1995) Value of serum PSA and PAP measurement with newly developed latex turbidimetric immu­noassay. Acta Urologica Japonica 41, 439- 435.
  • Bodansky, O. (1972) Acid phosphatase. Adv. Clin. Chem. 15, 143-147.
  • CHAIN (version 5.4) Manual (1993) Baylor Col­lege of Medicine.
  • COLLABORATIVE COMPUTATIONAL PRO­JECT, NUMBER 4. (1994) The CCP4 suite: Programs for protein crystallography. Acta Cryst. D50. 760-763.
  • Drenckhahn, D., Waheed, A. & Van Etten, R. (1987) Demonstration of prostatic type acid phosphatase in non-lysosomal granules in the crypt epithelium of the human duodenum. Histochemistry 88, 47-52.
  • Gilson. M.K., Sharp, K.A. & Honig, B.H. (1987) Calculating the elctrostatic potential of mole­cules in solution: Method and error assesse- ment. J. Comput. Chem. 9, 327-335.
  • Gutman, E. & Gutman, A.B. (1938) An acid phos­phatase occurring in the serum of patients with matastasizing carcinoma of prostate gland. J. Clin. Invest. 17, 473-478.
  • Honig, B. & Nicholls, A. (1995) A classical elec­trostatics in biology and chemistry. Science 268, 1144-1149.
  • Jakob, C.G., Kuciel, R., Lewiński, K., Ostrowski, W. & Lebioda, L. (1995) Crystal structure of human prostatic acid phosphatase at 3.1 A resolution. American Cryst. Assoc. Meeting Abstracts, Montreal, Quebec.
  • Kilsheimer, G.S. & Axelrod, B. (1957) Inhibition of prostatic acid phosphatase by a-hydroxy carboxylic acids. J. Biol. Chem. 227, 879.
  • Kuciel, R., Jakob, C.G. & Lebioda, L. (1992) Crys­tallization of human prostatic acid phos­phatase using biphasic systems. J. Crystal Growth 122, 199-203.
  • Lindqvist, Y., Schneider, G. & Vihko, P. (1993) Three dimensional structure of rat acid phos­phatase in complex with L-(+)-tartrate. J. Biol. Chem. 268, 20744-20746.
  • Lindqvist, Y., Schneider, G. & Vihko, P. (1994) Crystal structures of rat acid phosphatase complexed with the transition-state analogs vanadate and molybdate: Implications for the reaction mechanism. Eur. J. Biochem. 221, 139-142.
  • Molecular Simulations, INSIGHT II manual (1996) San Diego, U.S.A.
  • Ostrowski, W. (1980) Human prostatic acid phos­phatase: Physicochemical and catalytic prop­erties; in Male Accessory Glands (Spring- 1997
  • Mills, E. & Hafez, E.S.F., eds.) pp. 197-213, Elsevier North-Holland Biomedical Press.
  • Shaw, I.M., Yang, N., Brooks, J.J., Neat, M., Marsh, I. & Seamonds, B. (1981) Immuno­chemical evaluation of organ specificity of prostatic acid phosphatase. Clin. Chem. 27, 1505-1512.
  • SYBYL (version 6.3) Manual (1991-1996) Tripos. Inc., St. Louis, U.S.A.
  • Sindhu, J. & Sanches, R. (1993) Prostatic acid phosphatase in strumal ovary. Cancer 72. 1673-1678.
  • Van Etten, R.L. (1982) Human prostatic acid phosphatase: A histidine phosphatase. Ann. N.Y. Acad. Sci. 390. 27-51.
  • Van Etten, R.L. & Saini, M.S. (1978) Selective purification of tartrate-inhibitable acid phos­phatase: Rapid and efficient purification (to homogeneity) of human and canine phos­phatases. Clin. Chem. 24. 1525-1530.
  • Van Etten, R.L., Ostanin, K. & Saeed, A. (1994) Heterologous expression of human prostatic acid phosphatase and site-directed mutagene­sis of the enzvme active site. J. Biol. Chem. 269, 8971-8978.
  • Vincent, J.B., Crowder, M.W. & Averill, B.A. (1992) Hydrolysis of phosphate monoesters: A biological problem with multiple solutions. Trends Biochem. Sci. 195, 105-110.
  • Weincr, S.J., Kolleman, P.A., Nguyen, D.T. & Case, D.A. (1986) An atom force field for simulations of proteins and nucleic acids. J. Comput. Chem. 7, 230-252.

Typ dokumentu

Bibliografia

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bwmeta1.element.agro-article-26fe043b-0823-4956-a751-c3243b69e1bd
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