TY - JOUR
T1 - Heterocellular interaction enhances recruitment of α and β-catenins and ZO-2 into functional gap-junction complexes and induces gap junction-dependant differentiation of mammary epithelial cells
AU - Talhouk, Rabih S.
AU - Mroue, Rana
AU - Mokalled, Mayssa
AU - Abi-Mosleh, Lina
AU - Nehme, Ralda
AU - Ismail, Ayman
AU - Khalil, Antoine
AU - Zaatari, Mira
AU - El-Sabban, Marwan E.
N1 - Funding Information:
The authors are grateful to Drs. Fadia Homaidan and Medhat Khattar for critical reading of the manuscript. Hilda El-Khoury, Hashem A. Dbouk and Tina Rayes are acknowledged for technical assistance and assisting in the preparation of the manuscript. This work is supported by the University Research Board and Lebanese National Council for Scientific Research (RST and MES), and Medical Practice Plan (MES).
PY - 2008/11/1
Y1 - 2008/11/1
N2 - Gap junctions (GJ) are required for mammary epithelial differentiation. Using epithelial (SCp2) and myoepithelial-like (SCg6) mouse-derived mammary cells, the role of heterocellular interaction in assembly of GJ complexes and functional differentiation (β-casein expression) was evaluated. Heterocellular interaction is critical for β-casein expression, independent of exogenous basement membrane or cell anchoring substrata. Functional differentiation of SCp2, co-cultured with SCg6, is more sensitive to GJ inhibition relative to homocellular SCp2 cultures differentiated by exogenous basement membrane. Connexin (Cx)32 and Cx43 levels were not regulated across culture conditions; however, GJ functionality was enhanced under differentiation-permissive conditions. Immunoprecipitation studies demonstrated association of junctional complex components (α-catenin, β-catenin and ZO-2) with Cx32 and Cx43, in differentiation conditions, and additionally with Cx30 in heterocellular cultures. Although β-catenin did not shuttle between cadherin and GJ complexes, increased association between connexins and β-catenin in heterocellular cultures was observed. This was concomitant with reduced nuclear β-catenin, suggesting that differentiation in heterocellular cultures involves sequestration of β-catenin in GJ complexes.
AB - Gap junctions (GJ) are required for mammary epithelial differentiation. Using epithelial (SCp2) and myoepithelial-like (SCg6) mouse-derived mammary cells, the role of heterocellular interaction in assembly of GJ complexes and functional differentiation (β-casein expression) was evaluated. Heterocellular interaction is critical for β-casein expression, independent of exogenous basement membrane or cell anchoring substrata. Functional differentiation of SCp2, co-cultured with SCg6, is more sensitive to GJ inhibition relative to homocellular SCp2 cultures differentiated by exogenous basement membrane. Connexin (Cx)32 and Cx43 levels were not regulated across culture conditions; however, GJ functionality was enhanced under differentiation-permissive conditions. Immunoprecipitation studies demonstrated association of junctional complex components (α-catenin, β-catenin and ZO-2) with Cx32 and Cx43, in differentiation conditions, and additionally with Cx30 in heterocellular cultures. Although β-catenin did not shuttle between cadherin and GJ complexes, increased association between connexins and β-catenin in heterocellular cultures was observed. This was concomitant with reduced nuclear β-catenin, suggesting that differentiation in heterocellular cultures involves sequestration of β-catenin in GJ complexes.
KW - Catenin
KW - Connexins
KW - Lactation
KW - Zonula adherens
UR - http://www.scopus.com/inward/record.url?scp=54149110523&partnerID=8YFLogxK
U2 - 10.1016/j.yexcr.2008.07.030
DO - 10.1016/j.yexcr.2008.07.030
M3 - Article
C2 - 18775424
AN - SCOPUS:54149110523
SN - 0014-4827
VL - 314
SP - 3275
EP - 3291
JO - Experimental Cell Research
JF - Experimental Cell Research
IS - 18
ER -