Novel Steroidal Inhibitors of Human Cytochrome P45017.alpha.-Hydroxylase-C17,20-lyase): Potential Agents for the Treatment of Prostatic Cancer

Journal of Medicinal Chemistry
1995.0

Abstract

Steroidal compounds having a 17-(3-pyridyl) substituent together with a 16,17-double bond have been synthesized, using a palladium-catalyzed cross-coupling reaction of a 17-enol triflate with diethyl(3-pyridyl)borane, which are potent inhibitors of human testicular 17 alpha-hydroxylase-C17,20-lyase. The requirement for these structural features is stringent: compounds having 2-pyridyl (9), 4-pyridyl (10), or 2-pyridylmethyl (11) substituents instead of the 3-pyridyl substituent were either poor inhibitors or noninhibitory. Reduction of the 16,17-double bond to give 17 beta-pyridyl derivatives diminished potency with 3-pyridyl substitution (3-->27; IC50 for lyase, 2.9-->23 nM) but increased it with a 4-pyridyl substituent present (10-->28; IC50 1 microM-->53 nM). In contrast, a variety of substitution patterns in rings A-C of the steroid skeleton afforded inhibitors having potencies similar to those most closely related structurally to the natural substrates pregnenolone and progesterone, respectively 17-(3-pyridyl)androsta-5,16-dien-3 beta-ol (3, Kiapp < 1 nM; IC50 for lyase, 2.9 nM) and 17-(3-pyridyl)androsta-4,16-dien-3-one (15; IC50 for lyase, 2.1 nM). Thus compounds having variously aromatic ring A (18), saturated rings A/B (21, 22), and oxygenated ring C (26) exhibited IC50 values for lyase (1.8-3.0 nM) falling within a 2-fold range. The most potent compounds are candidates for development as drugs for the treatment of hormone-dependent prostatic carcinoma.

Knowledge Graph

Similar Paper

Novel Steroidal Inhibitors of Human Cytochrome P45017.alpha.-Hydroxylase-C17,20-lyase): Potential Agents for the Treatment of Prostatic Cancer
Journal of Medicinal Chemistry 1995.0
3- and 4-Pyridylalkyl Adamantanecarboxylates:  Inhibitors of Human Cytochrome P450<sub>17</sub><sub>α</sub> <b>(17</b>α-Hydroxylase/C<sub>17,20</sub>-Lyase). Potential Nonsteroidal Agents for the Treatment of Prostatic Cancer
Journal of Medicinal Chemistry 1996.0
Novel 17-Azolyl Steroids, Potent Inhibitors of Human Cytochrome 17α-Hydroxylase-C<sub>17,20</sub>-lyase (P450<sub>17</sub><sub>α</sub>):  Potential Agents for the Treatment of Prostate Cancer
Journal of Medicinal Chemistry 1998.0
17-Imidazolyl, Pyrazolyl, and Isoxazolyl Androstene Derivatives. Novel Steroidal Inhibitors of Human Cytochrome C<sub>l7,20</sub>-Lyase (P450<sub>17α</sub>)
Journal of Medicinal Chemistry 1997.0
Esters of 3-Pyridylacetic Acid That Combine Potent Inhibition of 17.alpha.-Hydroxylase/C17,20-Lyase (Cytochrome P45017.alpha.) with Resistance to Esterase Hydrolysis
Journal of Medicinal Chemistry 1995.0
Synthesis and Evaluation of Novel Steroidal Oxime Inhibitors of P450 17 (17α-Hydroxylase/C17−20-Lyase) and 5α-Reductase Types 1 and 2
Journal of Medicinal Chemistry 2000.0
Synthesis and Evaluation of 17-Aliphatic Heterocycle-Substituted Steroidal Inhibitors of 17α-Hydroxylase/C17−20-Lyase (P450 17)
Journal of Medicinal Chemistry 2000.0
Novel C-17-Heteroaryl Steroidal CYP17 Inhibitors/Antiandrogens:  Synthesis, in Vitro Biological Activity, Pharmacokinetics, and Antitumor Activity in the LAPC4 Human Prostate Cancer Xenograft Model
Journal of Medicinal Chemistry 2005.0
Synthesis and Evaluation of Pregnane Derivatives as Inhibitors of Human Testicular 17α-Hydroxylase/C<sub>17,20</sub>-Lyase<sup>,</sup>
Journal of Medicinal Chemistry 1996.0
Novel CYP17 inhibitors: Synthesis, biological evaluation, structure–activity relationships and modelling of methoxy- and hydroxy-substituted methyleneimidazolyl biphenyls
European Journal of Medicinal Chemistry 2009.0