| Literature DB >> 30952834 |
Tongguo Shi1,2,3, Yanchao Ma1,2,3,4, Lei Cao1,2,3, Shenghua Zhan1,2, Yunyun Xu5, Fengqing Fu1,2,3, Cuiping Liu1,2,3, Guangbo Zhang1,2,3, Zhenxin Wang1,2,3, Ruoqin Wang1,2,3, Huimin Lu1,2,3, Binfeng Lu6, Weichang Chen7,8,9,10, Xueguang Zhang11,12,13.
Abstract
Accumulating evidence suggests that aerobic glycolysis is important for colorectal cancer (CRC) development. However, the underlying mechanisms have yet to be elucidated. B7-H3, an immunoregulatory protein, is broadly overexpressed by multiple tumor types and plays a vital role in tumor progression. In this study, we found that overexpression of B7-H3 effectively increased the rate of glucose consumption and lactate production, whereas knockdown of B7-H3 had the opposite effect. Furthermore, we showed that B7-H3 increased glucose consumption and lactate production by promoting hexokinase 2 (HK2) expression in CRC cells, and we also found that HK2 was a key mediator of B7-H3-induced CRC chemoresistance. Depletion of HK2 expression or treating cells with HK2 inhibitors could reverse the B7-H3-induced increase in aerobic glycolysis and B7-H3-endowed chemoresistance of cancer cells. Moreover, we verified a positive correlation between the expression of B7-H3 and HK2 in tumor tissues of CRC patients. Collectively, our findings suggest that B7-H3 may be a novel regulator of glucose metabolism and chemoresistance via controlling HK2 expression in CRC cells, a result that could help develop B7-H3 as a promising therapeutic target for CRC treatment.Entities:
Mesh:
Substances:
Year: 2019 PMID: 30952834 PMCID: PMC6450969 DOI: 10.1038/s41419-019-1549-6
Source DB: PubMed Journal: Cell Death Dis Impact factor: 8.469
Fig. 1B7-H3 promoted aerobic glycolysis in CRC cells.
a B7-H3 protein levels in both B7-H3-overexpressing HCT116 and RKO cells were analyzed by western blot. β-actin served as a loading control. b, c Glucose consumption (b) and lactate production (c) were measured in both B7-H3-overexpressing HCT116 and RKO cells. d B7-H3 protein levels in both HCT116 and RKO cells were analyzed by western blot after transfection with siRNA negative control (NC), B7-H3 siRNA-1 or B7-H3 siRNA-2. β-actin served as a loading control. e, f Glucose consumption (e) and lactate production (f) were measured in both HCT116 and RKO cells transfected with NC, B7-H3 siRNA-1 or B7-H3 siRNA-2. Values were expressed as means (SEMs). Five samples were analyzed per condition, and the experiments were performed in triplicate. *P < 0.05
Fig. 2B7-H3 promoted the expression of HK2 in CRC cells.
a, b The expression of glycolysis-related genes was detected by RT-qPCR in both B7-H3-overexpressing HCT116 (a) and RKO (b) cells. c, d The mRNA level of HK2 was detected by RT-qPCR in both HCT116 (c) and RKO (d) cells after transfection with siRNA NC, B7-H3 siRNA-1 or B7-H3 siRNA-2. e HK2 protein level and STAT3 activation (examined by the p-STAT3 expression level) were detected by western blot in both HCT116 and RKO cells after transfection with NC, B7-H3 siRNA-1 or B7-H3 siRNA-2. β-actin served as a loading control. f HK2 protein level and STAT3 activation (examined by the p-STAT3 expression level) were detected by western blot in both B7-H3-overexpressing HCT116 and RKO cells. β-actin served as a loading control. g Schematic representation of the proposed B7-H3/STAT3/HK2 axis. Values are expressed as means (SEMs). Five samples were analyzed per condition, and the experiments were performed in triplicate. *P < 0.05
Fig. 3B7-H3 regulated glycolysis through HK2.
a The protein level of HK2 in B7-H3-overexpressing HCT116 or RKO cells after transfection with siRNA negative control (NC) or HK2 siRNA transfection were analyzed by western blot. β-actin served as a loading control. b, c Glucose consumption (b) and lactate production (c) were measured in B7-H3-overexpressing HCT116 or RKO cells transfected with NC or HK2 siRNA. d, e Glucose consumption (d) and lactate production (e) were measured in B7-H3-overexpressing HCT116 or RKO cells treated with PBS or 2-DG. Values are expressed as means (SEMs). Five samples were analyzed per condition, and the experiments were performed in triplicate. *P < 0.05
Fig. 4The effect of B7-H3 on the chemoresistance of CRC cells was HK2 dependent in vitro.
a, b Colony formation assay of B7-H3-overexpressing HCT116 or RKO cells exposed to L-OHP. The chemoresistance of B7-H3 was abolished by HK2 siRNA or 2-DG. c, d Cell viability was analyzed using the CCK-8 kit. B7-H3-overexpressing HCT116 or RKO cells showed resistance to L-OHP (c) or 5-FU (d). The chemoresistance of B7-H3 was abolished by HK2 siRNA or 2-DG. e B7-H3-overexpressing HCT116 or RKO cells showed less cell apoptosis than control cells (EV) after L-OHP treatment. The effect of B7-H3 on cell apoptosis was abolished by HK2 siRNA or 2-DG. f The protein levels of Bcl-2 and Bax were detected by western blot in both B7-H3-overexpressing HCT116 and RKO cells. The effect of B7-H3 on Bcl-2 and Bax expression was abolished by HK2 siRNA. β-actin served as a loading control. Values are expressed as means (SEMs). Five samples were analyzed per condition, and the experiments were performed in triplicate. *P < 0.05
Fig. 5The effect of B7-H3 on the chemoresistance of CRC cells was HK2 dependent in vivo.
a Schematic overview of the xenograft tumor model and L-OHP treatment. b The volumes of the B7-H3-overexpressing HCT116 tumors in nude mice following L-OHP treatment. c A representative image of B7-H3-overexpressing HCT116 tumors in nude mice following L-OHP treatment. d The weights of the B7-H3-overexpressing HCT116 tumors in nude mice following L-OHP treatment. e Schematic overview of the xenograft tumor model and 2-DG or L-OHP treatment. f The volumes of the B7-H3-overexpressing HCT116 tumors in nude mice following 2-DG and L-OHP treatment. g A representative image of the overexpressing B7-H3 HCT116 tumors in nude mice following 2-DG and L-OHP treatment. h The weights of the B7-H3-overexpressing HCT116 tumors in nude mice following 2-DG and L-OHP treatment. Values are expressed as means (SEMs). n = 5 mice per group. *P < 0.05
Fig. 6HK2 protein levels positively correlated with B7-H3 expression in CRC patient specimens.
a Images of IHC analysis of B7-H3 and HK2 protein expression and hematoxylin and eosin (H&E) staining of CRC (n = 126) tissue sections. One representative image is shown. b, c B7-H3 (b) and HK2 (c) protein expression based on their staining index in nonmalignant adjacent tissues (NAT) and CRC specimens. d Correlation analysis of the staining index of expression levels of B7-H3 and HK2 protein in human CRC specimens (n = 126). e, f B7-H3 (e) and HK2 (f) protein expression based on their staining index in CRC specimens at different clinical stages. Values are expressed as means (SEMs). *P < 0.05