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Publication : Phenotypical analysis of atypical PKCs in vivo function display a compensatory system at mouse embryonic day 7.5.

First Author  Seidl S Year  2013
Journal  PLoS One Volume  8
Issue  5 Pages  e62756
PubMed ID  23690951 Mgi Jnum  J:202124
Mgi Id  MGI:5517516 Doi  10.1371/journal.pone.0062756
Citation  Seidl S, et al. (2013) Phenotypical analysis of atypical PKCs in vivo function display a compensatory system at mouse embryonic day 7.5. PLoS One 8(5):e62756
abstractText  BACKGROUND: The atypical protein kinases C (PKC) isoforms iota/lambda and zeta play crucial roles in many cellular processes including development, cell proliferation, differentiation and cell survival. Possible redundancy between the two isoforms has always been an issue since most biochemical tools do not differentiate between the two proteins. Thus, much effort has been made during the last decades to characterize the functions of aPKCs using gene targeting approaches and depletion studies. However, little is known about the specific roles of each isoform in mouse development. METHODOLOGY/PRINCIPAL FINDINGS: To evaluate the importance of PKCiota in mouse development we designed PKCiota deletion mutants using the gene targeting approach. We show that the deletion of PKCiota, results in a reduced size of the amniotic cavity at E7.5 and impaired growth of the embryo at E8.5 with subsequent absorption of the embryo. Our data also indicate an impaired localization of ZO-1 and disorganized structure of the epithelial tissue in the embryo. Importantly, using electron microscopy, embryoid body formation and immunofluorescence analysis, we found, that in the absence of PKCiota, tight junctions and apico-basal polarity were still established. Finally, our study points to a non-redundant PKCiota function at E9.5, since expression of PKCzeta is able to rescue the E7.5 phenotype, but could not prevent embryonic lethality at a later time-point (E9.5). CONCLUSION: Our data show that PKCiota is crucial for mouse embryogenesis but is dispensable for the establishment of polarity and tight junction formation. We present a compensatory function of PKCzeta at E7.5, rescuing the phenotype. Furthermore, this study indicates at least one specific, yet unknown, PKCiota function that cannot be compensated by the overexpression of PKCzeta at E9.5.
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