Developmental expression and regulation of adrenocortical cytochrome P4501B1 in the rat

Citation
Pb. Brake et al., Developmental expression and regulation of adrenocortical cytochrome P4501B1 in the rat, ENDOCRINOL, 140(4), 1999, pp. 1672-1680
Citations number
39
Categorie Soggetti
Endocrinology, Nutrition & Metabolism
Journal title
ENDOCRINOLOGY
ISSN journal
00137227 → ACNP
Volume
140
Issue
4
Year of publication
1999
Pages
1672 - 1680
Database
ISI
SICI code
0013-7227(199904)140:4<1672:DEAROA>2.0.ZU;2-L
Abstract
A 57-kDa protein whose expression in rat adrenocortical microsomes is incre ased after weaning has been identified as cytochrome P4501B1 (CYP1B1). Leve ls of CYP1B1 protein were moderately ex pressed in late gestation fetuses a nd on postnatal day 1 (pd1), but were nearly undetectable on pd6 and pd10. CYP1B1 expression initially increased in the late preweaning period (pd17-1 9) and again immediately postweaning (pd21-24). The temporal coincidence of CYP1B1 expression and weaning was not due to transition from suckling to s olid food, as neonates that were prematurely weaned showed no increase in a drenal CYP1B1 compared with normally weaned littermates. The pattern of CYP 1B1 expression paralleled changes in microsomal metabolism of 7,12-dimethyl benz [a] anthracene (DMBA), a marker of CYP1B1 activity. Twice daily inject ions of ACTH to rat pups (pd3-10) failed to significantly increase the expr ession of CYP1B1 in pd10 adrenals, although the injections weakly stimulate d steroidogenesis. Adrenocortical cells from pd17 neonates and adult cells, when cultured for 3 days, responded similarly to ACTH induction, although neonates showed more than 4-fold less basal activity. It is concluded that rat adrenal CYP1B1 may be developmentally suppressed, and its expression is independent of diet or the presence of a dam. This suppression is retained in cell culture, but is not due to deficient ACTH signaling. These results may explain the reported resistance of neonatal rat adrenals to the toxic effects of polycyclic aromatic hydrocarbons, which are metabolized by CYP1B 1 into mutagenic by-products.