RRC ID 45055
著者 Isono T, Chano T, Kitamura A, Yuasa T.
タイトル Glucose deprivation induces G2/M transition-arrest and cell death in N-GlcNAc2-modified protein-producing renal carcinoma cells.
ジャーナル PLoS One
Abstract Some cancer cells can survive under glucose deprivation within the microenvironment of a tumor. Recently, we reported that N-linked (β-N-acetylglucosamine)2 [N-GlcNAc2]-modified proteins induce G2/M arrest and cell death under glucose deprivation. Here, we investigated whether such a response to glucose deprivation contributes to the survival of renal cell carcinomas, which are sensitive to nutritional stress. Specifically, we analyzed seven renal carcinoma cell lines. Four of these cell lines produced N-GlcNAc2-modified proteins and led G2/M-phase arrest under glucose deprivation, leading to cell death. The remaining three cell lines did not produce N-GlcNAc2-modified proteins and undergo G1/S-phase arrest under glucose deprivation, leading to survival. The four dead cell lines displayed significant up-regulation in the UDP-GlcNAc biosynthesis pathway as well as increased phosphorylation of p53, which was not observed in the surviving three cell lines. In addition, the four dead cell lines showed prolonged up-regulated expression of ATF3, which is related to unfolded protein response (UPR), while the surviving three cell lines showed only transient up-regulation of ATF3. In this study, we demonstrated that the renal carcinoma cells which accumulate N-GlcNAc2-modified proteins under glucose deprivation do not survive with abnormaly prolonged UPR pathway. By contrast, renal carcinoma cells that do not accumulate N-GlcNAc2-modified proteins under these conditions survive. Morover, we demonstrated that buformin, a UPR inhibitor, efficiently reduced cell survival under conditions of glucose deprivation for both sensitive and resistant phenotypes. Further studies to clarify these findings will lead to the development of novel chemotherapeutic treatments for renal cancer.
巻・号 9(5)
ページ e96168
公開日 2014-1-1
DOI 10.1371/journal.pone.0096168
PII PONE-D-13-52772
PMID 24796485
PMC PMC4010426
MeSH Acetylglucosamine / metabolism* Activating Transcription Factor 3 / biosynthesis Buformin / pharmacology Cell Death Cell Line, Tumor G2 Phase Cell Cycle Checkpoints* Gene Expression Regulation / drug effects Glucose* Glycoproteins / metabolism* Glycosylation Humans Hypoglycemic Agents / pharmacology Kidney Neoplasms M Phase Cell Cycle Checkpoints* Tumor Microenvironment* Tumor Suppressor Protein p53 / biosynthesis
IF 2.74
引用数 16
WOS 分野 ONCOLOGY
リソース情報
ヒト・動物細胞 VMRC-RCW(RCB1963)