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        Mouse Fyn induces pseudopodium formation in Chinese hamster ovary cells

        Lei An,Shengnan Liu,Wei Zhang,Yamei Zhang,Yingxue Huang,Xinde Hu,Shu-lin Chen,Shanting Zhao 대한수의학회 2014 JOURNAL OF VETERINARY SCIENCE Vol.15 No.1

        Molecular mechanisms underlying the effects of Fyn on cellmorphology, pseudopodium movement, and cell migrationwere investigated. The Fyn gene was subcloned into pEGFP-N1to produce pEGFP-N1-Fyn. Chinese hamster ovary (CHO)cells were transfected with pEGFP-N1-Fyn. The expression ofFyn mRNA and proteins was monitored by reversetranscription-PCR and Western blotting. Additionally,transfected cells were stained with 4´,6-diamidino-2-phenylindole and a series of time-lapse images was taken. Sequences of the recombinant plasmids pMD18-T-Fyn andpEGFP-N1-Fyn were confirmed by sequence identificationusing National Center for Biotechnology Information in USA,and Fyn expression was detected by RT-PCR and Westernblotting. The morphology of CHO cells transfected with therecombinant vector was significantly altered. Fyn expressioninduced filopodia and lamellipodia formation. Based on theseresults, we concluded that overexpression of mouse Fyn inducesthe formation of filopodia and lamellipodia in CHO cells, andpromotes cell movement.

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