| Literature DB >> 35038949 |
XiaoJing Chen1, Yite Xue1, Lingfang Wang1, Yang Weng2, Sen Li1, Weiguo Lü1,2, Xing Xie1,2, Xiaodong Cheng1,2.
Abstract
Choriocarcinoma is one of the most aggressive gestational trophoblastic neoplasias (GTN). Methotrexate (MTX) resistance is the main cause of treatment failure in choriocarcinoma. However, the mechanism of MTX resistance in choriocarcinoma is poorly known. This study aims to explore the function of Lectin galactoside-binding soluble 3 binding protein (LGALS3BP) in MTX-resistance in choriocarcinoma cells. Gradual dose escalation of MTX was used to establish MTX-resistant choriocarcinoma cells (JAR-MTX and JEG3-MTX cell lines). RNA-sequencing was used to explore the differentially expressed genes. Plasmids or SiRNA transfection was used to regulate the expression of LGALS3BP. ELISA was used to detect the concentrations of LGALS3BP in the serum of MTX-sensitive and MTX-resistant patients. qRT-PCR, Western blot, and CCK-8 assay were used to determine the effects of LGALS3BP on MTX-resistance in JAR and JEG3 cells. The results showed the relative resistance index (RI) of MTX is 791.50 and 1040.04 in JAR-MTX and JEG3-MTX, respectively. LGALS3BP was up-regulated in MTX-resistant cells compared to original cells in both RNA and protein level. The concentrations of LGALS3BP were higher in the sera of MTX-resistant patients than in MTX-sensitive patients. Knocking down LGALS3BP can reverse the MTX-resistance in JAR-MTX and JEG3-MTX cells. In summary, we preliminarily established two MTX-resistant cells, and performed RNA-sequencing, and found LGALS3BP may play important role in MTX-resistance. Our work not only provides a research tool (MTX-resistant cells) for other researchers, but gives some hint on how MTX resistance is regulated.Entities:
Keywords: Lectin galactoside-binding soluble 3 binding protein (LGALS3BP); RNA–sequencing; choriocarcinoma; methotrexate resistance
Mesh:
Substances:
Year: 2022 PMID: 35038949 PMCID: PMC8973873 DOI: 10.1080/21655979.2021.2022844
Source DB: PubMed Journal: Bioengineered ISSN: 2165-5979 Impact factor: 3.269
Figure 1.Evaluation of JAR and JEG3 cells with acquired resistance to MTX. (a) The cell morphology of MTX-resistant JAR, JEG3 and original cells under an inverted microscope. (b and c): The survival of JAR and JAR-MTX(b), JEG3 and JEG3-MTX(c) at various concentrations of methotrexate analyzed by CCK-8 assays. (d and e): Cell proliferation of JAR and JAR-MTX(d), JEG3 and JEG3-MTX(e) was determined by CCK-8 assay. F and G: Cell cycle of JAR and JAR-MTX(f), JEG3 and JEG3-MTX(g) was determined by flow cytometry analysis. H and I: The expression of multidrug resistance gene 1(MDR1) was detected by qRT-PCR in JAR and JAR-MTX(h), JEG3 and JEG3-MTX(i). Data are expressed as mean ± SD from at least three independent experiments. ** P < 0.01, *** P < 0.001.
The distribution of cell cycle in JAR and JAR-MTX, JEG3 and JEG3-MTX
| JAR | JAR-MTX | JEG3 | JEG-MTX | |
|---|---|---|---|---|
| G1 phase | 60.5 ± 0.50% | 55.3 ± 1.72% | 32.7 ± 1.76% | 33.3 ± 0.53% |
| S phase | 32.5 ± 0.36% | 26.8 ± 1.42% | 48.3 ± 1.00% | 44.0 ± 0.40% |
| G2 phase | 6.91 ± 0.15% | 17.8 ± 0.75% | 18.3 ± 0.21% | 27.8 ± 0.93% |
Relative resistance index of different chemotherapeutic drugs to the drug resistance of MTX cell lines of Choriocarcinoma cancer
| MTX–resistant cell lines | Relative resistance indexa | ||||
|---|---|---|---|---|---|
| MTX | VP-16 | 5-FU | TAXOL | ACTD | |
| JAR-MTX/JAR | 791.5 | 2.31 | 4.45 | 2.47 | 2.74 |
| JEG3-MTX/JEG3 | 1040.0 | 22.6 | 2.35 | 2.19 | 7.11 |
a: Relative resistance index is defined as the IC50 value of the drug resistance of MTX cells divided by the IC50 value of Choriocarcinoma cells.
Figure 2.Verification of LGALS3BP overexpression in MTX-resistant GTN cells. (a) RNA-sequencing of differentially expressed genes in MTX-resistant and original GTN cells. (b) Determination of differentially expressed genes in MTX-resistant and original GTN cells by qRT-PCR. (c) Determination of LGALS3BP expression in MTX-resistant and original GTN cells by Western blot analysis. (d) Determination of LGALS3BP concentration in serum of patients with MTX-resistant choriocarcinoma compared with MTX-sensitive choriocarcinoma by ELISA. Data are expressed as mean ± SD of at least three independent experiments. ** P < 0.01, *** P < 0.001.
The LGALS3BP concentration in serum of patients with MTX-resistant choriocarcinoma compared to that in MTX-sensitive choriocarcinoma
| LGALS3BP concentration(ng/ml) | |
|---|---|
| Serum of patients with MTX-sensitive choriocarcinoma(n = 20) | 621.39–6651.35 |
| Serum of patients with MTX-resistant choriocarcinoma(n = 20) | 3376.00–10,157.90 |
Figure 3.LGALS3BP promotes MTX resistance in JAR and JEG3 cells. (a) Determination of LGALS3BP expression in LGALS3BP-overexpressed JAR and JEG3 cells by qRT-PCR. (b) Determination of LGALS3BP expression in LGALS3BP-overexpressed JAR and JEG3 cells by Western blot analysis. (c) Determination of IC50 in LGALS3BP-overexpressed JAR and JEG3 cells by cell viability assay. (d) Determination of LGALS3BP expression in LGALS3BP- knockdown JAR-MTX and JEG3-MTX cells by qRT-PCR. (e) Determination of LGALS3BP expression in LGALS3BP-knockdown JAR-MTX and JEG3-MTX cells by Western blot analysis. (f) Determination of IC50 in LGALS3BP-knockdown JAR-MTX and JEG3-MTX cells by cell viability assay. Data expressed as mean ± SD from at least three independent experiments. *P < 0.05, ** P < 0.01, *** P < 0.001.