G.-Z. JIN, Y. YAMAGATA AND K.-I. TOMITA 313
the conformation with this angle nearly 90 or 270 ° is
unstable and shows the highest energy level.
This work was supported by a Grant-in-Aid from
the Tokyo Biochemical Research Foundation.
References
CANTRELL, J. S. & STALZER, R. A. (1982) Acta Cryst. B38,
983-984.
CASTLEDEN, I. R., HALL, S. R., NIMGIRAWATH, S., THADANITI,S.
& WHITE, A. H. (1985). Aust. J. Chem. 38, 1177-1185.
ESTRADA,M. D., CONDE,A., MM~QUEZ,R. & JIM~NEZ-GARAY, R.
(1987). Acta Cryst. C43, 1826-1829.
FERRELL, J. E. JR, CHANG SING, P. D. G., LOEW, G., KING, R.,
MANSOUR, J. M. & MANSOUR, T. E. (1979). Mol. Pharmacol.
16, 556-568.
HAYASHI, T., KAWAI, S., OH'NO, T., hTAKA, Y. & AKIMOTO, T.
(1974). Chem. Pharm. Bull. 22, 1219-1226.
International Tables for X-ray Crystallography (1974). Vol. IV, pp.
72-75. Birmingham: Kynoch Press. (Present distributor Kluwer
Academic Publishers, Dordrecht.)
JOHNSON, C. K. (1976). ORTEPII. Report ORNL-5138. Oak
Ridge National Laboratory, Tennessee, USA.
JURNAK, F. A. & TEMPLETON, D. H. (1975). Acta Cryst. B31,
1304-1309.
KIMURA, Y., OKUDA, H., TAIRA, Z., SHOJI, N., TAKEMOTO, T. &
Amcm, S. (1984). Planta Med. pp. 290--295.
LEE, T. J., Lu, T. H. & ZEE, S. H. (1974). Tetrahedron Lett. 24,
2081-2082.
MAIN, P., HULL, S. E., LESSINGER,L., GERMAIN,G., DECLERCQ,
J.-P. & WOOLFSON, M. M. (1978). MULTAN78. A System of
Computer Programs for the Automatic Solution of Crystal Struc-
tures from X-ray Diffraction Data. Univs. of York, England,
and Louvain, Belgium.
MARmZCURRENO,R. A. (1978). Acta Cryst. B34, 2322-2324.
TING, H. Y., WATSON,W. H. & DOMINGUEZ,X. A. (1972). Acta
Cryst. B28, 1046-1051.
UNICS (1979). The Universal Crystallographic Computing System-
Osaka. Library of Programs, Computation Center, Osaka
Univ., Japan.
VARMA,S. D. & KINOSHITA, J. H. (1976). Biochem. Pharmacoi. 25,
2505-2513.
VIJAYALAKSHMI,J., RAJAN, S. S. • SRINIVASAN,R. (1986). Acta
Cryst. C42, 1752-1754.
VLIAYALAKSHMI, J., RAJAN, S. S. & SRINIVASAN,R. (1987). Acta
Cryst. C43, 1998-2000.
WALLET,J. C., GAYDOU,E. M., FADLANE, A. &; BALDY,A. (1988).
Acta Cryst. C44, 357-359.
Acta Cryst. (1990). C46, 313-317
Structure of the Neuroleptic Drug 4-Amino-N-l-l(1-ethyl-2-pyrrolidinyl)methyi]-
5-( ethylsulfonyl)-2-metho xybenzalnide (Amisulpride)
BY H. L. DE WINTER, C. L. VERLINDE, N. M. BLATON, O. M. PELTERSAND C. J. DE RANTER*
Laboratorium voor Analytische Chemic en Medicinale Fysicochemie,
Instituut voor Farmaceutische Wetenschappen, Katholieke Universiteit Leuven,
Van Evenstraat 4, B-3000 Leuven, Belgium
(Received 20 February 1989; accepted 1 June 1989)
Abstract. CI7H27N304 S, M,=369.48, monoclinic,
P21/c, a = 13.333 (7), b = 7.946 (4), c =
17.550 (10) A, fl = 96.99 (4) °, V = 1845 (2) A 3, z =
4, Dm= 1.33, Dx = 1.330 Mg m-3, graphite-
monochromated Cu Ka radiation, a = 1-54178/~,/z
= 1.744 mm-~, F(000) = 792, T = 293 K. Final R =
0-038 for 2405 unique observed reflections. The
folded conformation of the molecule with the least-
squares planes of the aromatic and the pyrrolidine
rings almost perpendicular is essentially determined
by intra- and intermolecular hydrogen bonds. In this
way, two pseudorings are formed, one linking the
amide H with the methoxy O, and a second one
involving the 4-amino H and a sulfonyl O. An
intermolecular hydrogen bond forces the planar
amide group some 28 ° out of the plane of the
aromatic ring.
* To whom correspondence should be addressed.
0108-2701/90/020313-05503.00
Introduction. Amisulpride belongs to the same class
of neuroleptics as the widely reputed sulpiride. These
drugs act by blocking the dopamine D2 receptor
(Kebabian & Calne, 1979). The present investiga-
tion is part of a study examining the structural
requirements for doing so.
Experimental. Colorless crystals from a methanol-
amyl acetate solution, 0-6 x 0.2 x 0.2 mm. Density
measured by flotation in n-heptane/CCla, systematic
absences from Weissenberg photographs. Siemens
AED2 diffractometer, cell constants by least-squares
refinement of the setting angles of 44 reflections with
35 < 20 < 55 °, to/0 scan, [(sinO)/A]max= 0"5840 A - l
0 --- h <--16, 0<-k<-9, -21<l<21. Intensities of
four standard reflections (020, 400, 004, 100) moni-
tored every hour showed only statistical fluctuations,
3530 reflections measured, 2405 observed reflections
with IFol >61tr(Fo)l. Data reduction with Stoe &
© 1990 International Union of Crystallography