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JBC, Vol. 254, Issue 13, 5613-5617, Jul, 1979
F. Chasalow, H. Marr, F. Haour and J. M. Saez
When a single injection of 500 I.U. of human chorionic gonadotropin (hCG)
is given to rats there is an initial acute rise of plasma testosterone and
of testicular content for both cyclic AMP and testosterone. This response
correlates with an increase in both lyase and 17 alpha-hydroxylase
activities. Thereafter both plasma and testicular testosterone decline and
do not increase after a second injection of hCG. During this period of
desensitization, isolated Leydig cells were insensitive to the
steroidogenic stimulatory effect of both hCG and dibutyryl cyclic AMP. The
post-cyclic AMP block is not due to an alteration of the cyclic
AMP-dependent protein kinase but it is correlated with a decrease in both
lyase and 17 alpha-hydroxylase activities of the Leydig cell's microsomes.
This decrease is not caused by the absence of the recently described
cytosol activator of this enzyme because its addition did not restore the
enzymatic activity. Within 60 to 96 h after hCG injection there was a
spontaneous increase of both plasma and testicular testosterone and this
parallels the recovery of lyase and 17 alpha-hydroxylase activities. These
results suggest that both enzymatic activities are regulated, directly or
indirectly, by hCG, and that this is partly responsible for the hCG-induced
steroidogenic refractoriness of Leydig cells.
Testicular steroidogenesis after human chorionic gonadotropin desensitization in rats
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