CCL18-mediated down-regulation of miR98 and miR27b promotes breast cancer metastasis
ONCOTARGET
Authors: Lin, Xiaorong; Chen, Lijun; Yao, Yandang; Zhao, Ruihua; Cui, Xiuying; Chen, Jun; Hou, Kailian; Zhang, Mingxia; Su, Fengxi; Chen, Jingqi; Song, Erwei
Abstract
Our previous work has indicated that CCL18 secreted by tumor-associated macrophages (TAMs) promotes breast cancer metastasis, which is associated with poor patient prognosis. However, it remains unclear whether microRNAs (miRNAs), which may modulate multiple cellular pathways, are involved in the regulation of CCL18 signaling and the ensuing metastasis of breast cancer. In this study, we demonstrated that CCL18 reduces miR98 and miR27b expression via the N-Ras/ERK/PI3K/NF kappa B/Lin28b signaling pathway, while down-regulation of these mRNAs feedbacks to increase N-Ras and Lin28b levels. This cascade of events forms a positive feedback loop that sustains the activation of CCL18 signaling. More importantly, reduction in miR98 and miR27b enhances the epithelial-mesenchymal transition (EMT) of breast cancer cells, and thus promotes breast cancer metastasis. These findings suggest that down-regulation of miR98 and miR27b promotes CCL18-mediated invasion and migration of breast cancer cells.
DNA Microarray Analysis of Labial Salivary Glands in IgG4-Related Disease
ARTHRITIS & RHEUMATOLOGY
Authors: Tsuboi, Hiroto; Nakai, Yuji; Iizuka, Mana; Asashima, Hiromitsu; Hagiya, Chihiro; Tsuzuki, Sayaka; Hirota, Tomoya; Miki, Haruka; Hagiwara, Shinya; Kondo, Yuya; Tanaka, Akihiko; Moriyama, Masafumi; Matsumoto, Isao; Nakamura, Seiji; Yoshihara, Toshio; Abe, Keiko; Sumida, Takayuki
Abstract
ObjectiveTo compare gene expression in labial salivary glands (LSGs) from patients with IgG4-related disease with that in LSGs from patients with Sjogren's syndrome (SS). MethodsGene expression was analyzed by DNA microarray in LSG samples from 5 patients with IgG4-related disease, 5 SS patients, and 3 healthy controls. Genes differentially expressed in IgG4-related disease and SS were identified, and gene annotation enrichment analysis of these differentially expressed genes was performed using Gene Ontology (GO) annotation. Validation of the results was performed by quantitative polymerase chain reaction (PCR) using LSG samples from 9 patients with IgG4-related disease, 10 SS patients, and 4 controls. ResultsGene expression patterns in patients with IgG4-related disease, SS patients, and healthy controls were quite different from each other in hierarchical clustering as well as in principal components analysis. In IgG4-related disease compared with SS, a total of 1,771 probe sets (corresponding to 1,321 genes) were identified as up-regulated, and 1,785 probe sets (corresponding to 1,320 genes) were identified as down-regulated (false discovery rate of <5%). GO term analysis indicated that the up-regulated set of differentially expressed genes in IgG4-related disease encoded proteins that function in cell proliferation, extracellular matrix organization, and organ development. PCR validated significantly higher expression of lactotransferrin in patients with IgG4-related disease than in SS patients (P < 0.05) and significantly higher expression of CCL18 in patients with IgG4-related disease than in SS patients and controls (P < 0.05). ConclusionThe results clearly showed that the gene expression pattern in LSGs from patients with IgG4-related disease is different from that in LSGs from SS patients.