Keratin 18 induces proliferation, migration, and invasion in gastric cancer via the MAPK signalling pathway
CLINICAL AND EXPERIMENTAL PHARMACOLOGY AND PHYSIOLOGY
Authors: Wang, Peng-Bin; Chen, Yan; Ding, Guang-Rong; Du, Hong-Wei; Fan, Hong-Yan
Abstract
Purpose Keratin 18 (KRT18) is a cytoskeleton protein that plays a key role in multiple cancers. The present study aims to further investigate the roles of KRT18 in gastric cancer (GC) tissues and cells. Methods The KRT18 protein expression levels of GC tissues and cells were detected using immunohistochemistry and western blot. The relationship between KRT18 expression levels and the prognosis of GC patients was further analyzed. To explore this relationship, small interfering RNA (siRNA) was used to inhibit the endogenous expression of KRT18 in GC cells. Furthermore, the effects of KRT18 on the proliferation, invasion, migration, and apoptosis of GC cells were analyzed in vitro. In addition, the role of KRT18 in GC-specific processes was investigated. Results Keratin 18 expression was shown to be up-regulated in GC tissues and associated with poor prognosis. Following KRT18 silencing with siRNA, the proliferation, invasion, and migration ability of GC cells were significantly inhibited, while the apoptotic process was promoted. Furthermore, the activation of the MAPK signalling pathway was identified as the potential mechanism through which KRT18 influenced GC processes. Conclusions Keratin 18 plays a cancer-promoting role and might be a potential therapeutic target in the treatment of GC.
Global gene expression of the inner cell mass and trophectoderm of the bovine blastocyst
BMC DEVELOPMENTAL BIOLOGY
Authors: Ozawa, Manabu; Sakatani, Miki; Yao, JiQiang; Shanker, Savita; Yu, Fahong; Yamashita, Rui; Wakabayashi, Shunichi; Nakai, Kenta; Dobbs, Kyle B.; Sudano, Mateus Jose; Farmerie, William G.; Hansen, Peter J.
Abstract
Background: The first distinct differentiation event in mammals occurs at the blastocyst stage when totipotent blastomeres differentiate into either pluripotent inner cell mass (ICM) or multipotent trophectoderm (TE). Here we determined, for the first time, global gene expression patterns in the ICM and TE isolated from bovine blastocysts. The ICM and TE were isolated from blastocysts harvested at day 8 after insemination by magnetic activated cell sorting, and cDNA sequenced using the SOLiD 4.0 system. Results: A total of 870 genes were differentially expressed between ICM and TE. Several genes characteristic of ICM (for example, NANOG, SOX2, and STAT3) and TE (ELF5, GATA3, and KRT18) in mouse and human showed similar patterns in bovine. Other genes, however, showed differences in expression between ICM and TE that deviates from the expected based on mouse and human. Conclusion: Analysis of gene expression indicated that differentiation of blastomeres of the morula-stage embryo into the ICM and TE of the blastocyst is accompanied by differences between the two cell lineages in expression of genes controlling metabolic processes, endocytosis, hatching from the zona pellucida, paracrine and endocrine signaling with the mother, and genes supporting the changes in cellular architecture, stemness, and hematopoiesis necessary for development of the trophoblast.