| Literature DB >> 18506084 |
Yukako Yoshikumi1, Hideki Ohno, Junko Suzuki, Masashi Isshiki, Yasuyuki Morishita, Hirohide Ohnishi, Hiroshi Yasuda, Masao Omata, Toshiro Fujita, Hirosato Mashima.
Abstract
Pancreatic AR42J cells demonstrate the pluripotency in precursor cells of the gut endoderm and also provide an excellent model system to study the differentiation of the pancreas. Using the mRNA differential display technique, we identified junctional adhesion molecule-1 (JAM-1), a component of the tight junction, was highly up-regulated during the differentiation of AR42J cells, although junctions were not formed. The expression level of JAM-1 showed an up-regulation in the mRNA level after 3 hours and in the protein level after 24 hours in [activin A + betacellulin]-treated AR42J cells. The expressions of its signaling molecules, PAR-3 and atypical PKC lambda, also increased after the addition of activin A + betacellulin. When JAM-1 was over-expressed in [activin A + betacellulin]-treated AR42J cells, tagged-JAM-1 was observed in cytoplasm as vesicular structures and JAM-1 was colocalized with Rab3B and Rab13, members of the Rab family expressed at tight junctions. In streptozotocin-induced regenerating islets, the expression of JAM-1 was also up-regulated in the mRNA level and the protein level. JAM-1 might therefore play an important role in the differentiation of AR42J cells and the regeneration of pancreatic islets.Entities:
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Year: 2008 PMID: 18506084 DOI: 10.1507/endocrj.k08e-017
Source DB: PubMed Journal: Endocr J ISSN: 0918-8959 Impact factor: 2.349