TY - JOUR
T1 - Enhanced expression of the M2 isoform of pyruvate kinase is involved in gastric cancer development by regulating cancer-specific metabolism
AU - Shiroki, Takeharu
AU - Yokoyama, Misa
AU - Tanuma, Nobuhiro
AU - Maejima, Ryuhei
AU - Tamai, Keiichi
AU - Yamaguchi, Kazunori
AU - Oikawa, Tomoyuki
AU - Noguchi, Tetsuya
AU - Miura, Koh
AU - Fujiya, Tsuneaki
AU - Shima, Hiroshi
AU - Sato, Ikuro
AU - Murata-Kamiya, Naoko
AU - Hatakeyama, Masanori
AU - Iijima, Katsunori
AU - Shimosegawa, Tooru
AU - Satoh, Kennichi
N1 - Funding Information:
Funding Information Grant-in Aid for Scientific Research (KAKENHI) (24591022, 15K19080); Japan Society for the Promotion of Science; Naito Foundation. This work was supported by Grants-in-Aid for Scientific Research (KAKENHI grant nos. 24591022 and 15K19080) and a grant from the Naito Foundation (to K.S).
Publisher Copyright:
© 2017 The Authors. Cancer Science published by John Wiley & Sons Australia, Ltd on behalf of Japanese Cancer Association.
PY - 2017/5
Y1 - 2017/5
N2 - Recent studies have indicated that increased expression of the M2 isoform of pyruvate kinase (PKM2) is involved in glycolysis and tumor development. However, little is known about the role of PKM2 in gastric cancer (GC). Therefore, we examined the expression and function of PKM2 in human GC. We evaluated PKM1 and PKM2 expression by quantitative RT-PCR in gastric tissues from 10 patients who underwent gastric endoscopic submucosal dissection, 80 patients who underwent gastrectomy, and seven healthy volunteers, and analyzed the correlation with clinicopathological variables. To assess the function of PKM2, we generated PKM2-knockdown GC cells, and investigated the phenotypic changes. Furthermore, we examined the induction of PKM2 expression by cytotoxin-associated gene A (CagA), a pathogenic factor of Helicobacter pylori, using CagA-inducible GC cells. We found that PKM2 was predominantly expressed not only in GC lesions but also in the normal gastric regions of GC patients and in the gastric mucosa of healthy volunteers. The PKM2 expression was significantly higher in carcinoma compared to non-cancerous tissue and was associated with venous invasion. Knockdown of PKM2 in GC cells caused significant decreases in cellular proliferation, migration, anchorage-independent growth, and sphere formation in vitro, and in tumor growth and liver metastasis in vivo. The serine concentration-dependent cell proliferation was also inhibited by PKM2 silencing. Furthermore, we found that PKM2 expression was upregulated by CagA by way of the Erk pathway. These results suggested that enhanced PKM2 expression plays a pivotal role in the carcinogenesis and development of GC in part by regulating cancer-specific metabolism.
AB - Recent studies have indicated that increased expression of the M2 isoform of pyruvate kinase (PKM2) is involved in glycolysis and tumor development. However, little is known about the role of PKM2 in gastric cancer (GC). Therefore, we examined the expression and function of PKM2 in human GC. We evaluated PKM1 and PKM2 expression by quantitative RT-PCR in gastric tissues from 10 patients who underwent gastric endoscopic submucosal dissection, 80 patients who underwent gastrectomy, and seven healthy volunteers, and analyzed the correlation with clinicopathological variables. To assess the function of PKM2, we generated PKM2-knockdown GC cells, and investigated the phenotypic changes. Furthermore, we examined the induction of PKM2 expression by cytotoxin-associated gene A (CagA), a pathogenic factor of Helicobacter pylori, using CagA-inducible GC cells. We found that PKM2 was predominantly expressed not only in GC lesions but also in the normal gastric regions of GC patients and in the gastric mucosa of healthy volunteers. The PKM2 expression was significantly higher in carcinoma compared to non-cancerous tissue and was associated with venous invasion. Knockdown of PKM2 in GC cells caused significant decreases in cellular proliferation, migration, anchorage-independent growth, and sphere formation in vitro, and in tumor growth and liver metastasis in vivo. The serine concentration-dependent cell proliferation was also inhibited by PKM2 silencing. Furthermore, we found that PKM2 expression was upregulated by CagA by way of the Erk pathway. These results suggested that enhanced PKM2 expression plays a pivotal role in the carcinogenesis and development of GC in part by regulating cancer-specific metabolism.
KW - Aerobic glycolysis
KW - CagA
KW - cancer development
KW - gastric cancer
KW - pyruvate kinase
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U2 - 10.1111/cas.13211
DO - 10.1111/cas.13211
M3 - Article
C2 - 28235245
AN - SCOPUS:85018841627
SN - 1347-9032
VL - 108
SP - 931
EP - 940
JO - Cancer Science
JF - Cancer Science
IS - 5
ER -