DIFFERENTIAL REGULATION OF DISTINCT TYPES OF GAP JUNCTION CHANNELS BY SIMILAR PHOSPHORYLATING CONDITIONS

被引:150
作者
KWAK, BR
HERMANS, MMP
DEJONGE, HR
LOHMANN, SM
JONGSMA, HJ
CHANSON, M
机构
[1] ERASMUS UNIV ROTTERDAM,CARDIOVASC RES INST COEUR,DEPT BIOCHEM,ROTTERDAM,NETHERLANDS
[2] UNIV WURZBURG,MED CLIN,DEPT CLIN BIOCHEM & PATHOBIOCHEM,W-8700 WURZBURG,GERMANY
关键词
D O I
10.1091/mbc.6.12.1707
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Studies on physiological modulation of intercellular communication mediated by protein kinases are often complicated by the fact that cells express multiple gap junction proteins (connexins; Cx). Changes in cell coupling can be masked by simultaneous apposite regulation of the gap junction channel types expressed. We have examined the effects of activators and inhibitors of protein kinase A (PKA), PKC, and PKG on permeability and single channel conductance of gap junction channels composed of Cx45, Cx43, or Cx26 subunits. To allow direct comparison between these Cx, SKHep1 cells, which endogenously express Cx45, were stably transfected with cDNAs coding for Cx43 or Cx26. Under control conditions, the distinct types of gap junction channels could be distinguished on the basis of their permeability and single channel properties. Under various phosphorylating conditions, these channels behaved differently. Whereas agonists/antagonist of PKA did not affect permeability and conductance of all gap junction channels, variable changes were observed under PKC stimulation. Cx45 channels exhibited an additional conductance state, the detection of the smaller conductance states of Cx43 channels was favored, and Cx26 channels were less often observed. In contrast to the other kinases, agonists/antagonist of PKG affected permeability and conductance of Cx43 gap junction channels only. Taken together, these results show that distinct types of gap junction channels are differentially regulated by similar phosphorylating conditions. This differential regulation may be of physiological importance during modulation of cell-to-cell communication of more complex cell systems.
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页码:1707 / 1719
页数:13
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