TY - JOUR
T1 - New insights into the regulation and function of brain estrogen synthase (aromatase)
AU - Balthazart, Jacques
AU - Ball, Gregory F.
N1 - Funding Information:
The work of the authors summarized in this review was supported by grants from the NIMH (R01 MH50388) to GFB and JB and from the Belgian FRFC (9.4565.96F), and Government of the French Community of Belgium (AC #93/98-171) to JB. We thank Drs L. Riters (Univ. Liège), M. Baillien (Univ. Liège), M.M. McCarthy (Univ. Maryland) and R.J. Nelson (Johns Hopkins Univ.) for useful comments and suggestions on an earlier version of this paper.
PY - 1998/6/1
Y1 - 1998/6/1
N2 - In the brain, conversion of androgens into estrogens by the enzyme aromatase (estrogen synthase) is a key mechanism by which testosterone regulates many physiological and behavioral processes, including the activation of male sexual behavior, brain sexual differentiation and negative feedback effects of steroid hormones on gonadotropin secretion. Studies on the distribution and regulation of brain aromatase have led to a new perspective on the control and function of this enzyme. A growing body of evidence indicates that the estrogen regulation of aromatase is, at least in part, trans-synaptic. Afferent catecholamine pathways appear to regulate aromatase activity in some brain areas and thereby provide a way for environmental cues to modulate this enzyme. The localization of aromatase in pre-synaptic boutons suggests possible roles for estrogens at the synapse.
AB - In the brain, conversion of androgens into estrogens by the enzyme aromatase (estrogen synthase) is a key mechanism by which testosterone regulates many physiological and behavioral processes, including the activation of male sexual behavior, brain sexual differentiation and negative feedback effects of steroid hormones on gonadotropin secretion. Studies on the distribution and regulation of brain aromatase have led to a new perspective on the control and function of this enzyme. A growing body of evidence indicates that the estrogen regulation of aromatase is, at least in part, trans-synaptic. Afferent catecholamine pathways appear to regulate aromatase activity in some brain areas and thereby provide a way for environmental cues to modulate this enzyme. The localization of aromatase in pre-synaptic boutons suggests possible roles for estrogens at the synapse.
UR - https://www.scopus.com/pages/publications/0032102369
UR - https://www.scopus.com/pages/publications/0032102369#tab=citedBy
U2 - 10.1016/S0166-2236(97)01221-6
DO - 10.1016/S0166-2236(97)01221-6
M3 - Article
C2 - 9641536
AN - SCOPUS:0032102369
SN - 0166-2236
VL - 21
SP - 243
EP - 249
JO - Trends in neurosciences
JF - Trends in neurosciences
IS - 6
ER -