CELL-CYCLE REGULATION OF A T-TYPE CALCIUM CURRENT IN EARLY MOUSE EMBRYOS

Citation
Ml. Day et al., CELL-CYCLE REGULATION OF A T-TYPE CALCIUM CURRENT IN EARLY MOUSE EMBRYOS, Pflugers Archiv, 436(6), 1998, pp. 834-842
Citations number
39
Categorie Soggetti
Physiology
Journal title
ISSN journal
00316768
Volume
436
Issue
6
Year of publication
1998
Pages
834 - 842
Database
ISI
SICI code
0031-6768(1998)436:6<834:CROATC>2.0.ZU;2-S
Abstract
In this paper we report that the amplitude of the T-current changes in a cell cycle-dependent manner in single- and two-cell embryos, being large in unfertilized oocytes and decreasing after fertilization throu ghout the first cell cycle to a minimum in early M phase, before incre asing again during late telophase. This increase can be prevented by a rresting the cell cycle in metaphase, but is not prevented by cytochal asin D. During the second cell cycle the T-current remains large until late G2 phase when it decreases. Protein synthesis inhibition has no effect on the changes in T-current amplitude during the cell cycle. Th is finding, along with the observation that the size of the T-current does not increase until mitosis exit, suggests that cell cycle regulat ion of the current does not involve the cycling of cyclin-dependent ki nase (cdk)1/cyclin B activity. Inhibition of the T-current with pimozi de has no effect on cleavage. The cell cycle-dependent changes in T-cu rrent amplitude appear to be driven by the same cdk1/cyclin-B-independ ent clock that we have previously shown to drive cyclic changes in Kf channel activity in early mouse embryos. Thus, multiple ion transport systems in the preimplantation mouse embryo are controlled by this cdk l/cyclin-Bindependent clock.