1.Knockdown of IGF2BP2 inhibits colorectal cancer cell proliferation, migration and promotes tumor immunity by down-regulating MYC expression.
Tianyue LIU ; Chenying HAN ; Chenchen HU ; Siyi MAO ; Yuanjie SUN ; Shuya YANG ; Kun YANG
Chinese Journal of Cellular and Molecular Immunology 2023;39(4):303-310
Objective To investigate the effect of insulin-like growth factor 2 mRNA binding protein 2 (IGF2BP2) on the proliferation, migration and tumor immune microenvironment of colorectal cancer cells and its possible molecular mechanism. Methods The Cancer Genome Atlas (TCGA) database was used to analyze the expression levels of IGF2BP2 and MYC in colorectal cancer and adjacent tissues. The expression of IGF2BP2 in HCT-116 and SW480 human colorectal cancer cells was silenced by RNA interference (RNAi), and the silencing effect was detected by quantitative real-time PCR. After knocking down IGF2BP2, colony formation assay, CCK-8 assay and 5-ethynyl-2'-deoxyuridine (EdU) assay were employed to detect cell colony formation and proliferation ability. TranswellTM assay was used to detect cell migration ability. Quantitative real-time PCR was used to detect the mRNA expression of IGF2BP2, MYC, tumor necrosis factor-α (TNF-α), transforming growth factor-β (TGF-β) and interleukin-10 (IL-10). The protein expression of IGF2BP2 and MYC was detected by western blot. The binding ability of IGF2BP2 and MYC in HCT-116 cells was detected by quantitative real-time PCR after RNA immunoprecipitation. Results The results of TCGA database showed that the expression of IGF2BP2 and MYC in colorectal cancer tissues was significantly higher than that in adjacent tissues, and the survival time of colorectal cancer patients with high expression of IGF2BP2 was shorter. After silencing IGF2BP2, the viability, proliferation and migration of HCT-116 and SW480 cells were decreased. The mRNA expression of MYC, TGF-β and IL-10 in IGF2BP2 knockdown group was significantly decreased, while the expression of TNF-α mRNA was increased. The expression of MYC protein and the stability of MYC mRNA were significantly decreased. RIP-qPCR results showed that IGF2BP2 could bind to MYC mRNA. Conclusion Knockdown of IGF2BP2 inhibits colorectal cancer cell proliferation, migration and promotes tumor immunity by down-regulating MYC expression.
Humans
;
Cell Line, Tumor
;
Cell Movement/genetics*
;
Cell Proliferation/genetics*
;
Colorectal Neoplasms/metabolism*
;
Gene Expression Regulation, Neoplastic
;
Interleukin-10/metabolism*
;
RNA, Messenger
;
RNA-Binding Proteins/metabolism*
;
Transforming Growth Factor beta/genetics*
;
Tumor Microenvironment/immunology*
;
Tumor Necrosis Factor-alpha/metabolism*
;
Proto-Oncogene Proteins c-myc/metabolism*
2.Correlation between expression of Lin28B and C-myc in patients with laryngeal squamous cell carcinoma and clinicopathological features and prognosis.
Feifei LIAO ; Yuxin CAO ; Meixiang HUANG ; Ling CHU ; Tiansheng WANG
Journal of Central South University(Medical Sciences) 2023;48(2):165-171
OBJECTIVES:
Laryngeal squamous cell carcinoma (LSCC) is a common malignant tumor of head and neck. Screening of target genes for malignant tumor therapy is one of the focuses of cancer research, with proto-oncogene and tumor suppressor gene as the breakthrough. It has become an urgent need to find the target gene related to the treatment and prognosis of LSCC.This study aims to explore the role of Lin28B and C-myc in LSCC by detecting the expressions of these two proteins and analyze the correlation between the expression of Lin28B and C-myc and clinicopathological features and prognosis of LSCC.
METHODS:
We detected the expression of Lin28B and C-myc proteins in 102 specimens of LSCC and 90 specimens of adjacent tissues by immunochemistry, and analyzed the correlation between Lin28B and C-myc protein expressions in LSCC as well as the correlation between the expressions of the two proteins and the clinicopathological features of LSCC. At the same time, the Kaplan-Meier method was used to analyze the relation between Lin28B and C-myc protein levels with the postoperative survival rate of LSCC patients.
RESULTS:
The protein levels of Lin28B and C-myc in the LSCC tissnes were significantly higher than those in the adjacent tissues (both P<0.05),and there was a positive correlation between the expression of Lin28B and C-myc in LSCC (r=0.476, P<0.05). The expression of Lin28B protein was closely related to age, lymph node metastasis, clinical stage, tumor size, and pathological differentiation of LSCC patients (all P<0.05). while the expression of C-myc protein was closely related to lymph node metastasis, clinical stage, tumor size, and pathological differentiation of LSCC patients (all P<0.05). A relevant survival analysis showed that in patients with higher level of Lin28B (P=0.001) or C-myc protein (P<0.001), the postoperative survival rate was relatively low.
CONCLUSIONS
Lin28B and C-myc proteins are highly expressed in LSCC with a positive correlation. Furthermore, they are closely related to lymph node metastasis, clinical stage, tumor size, pathological differentiation and prognosis, suggesting that both Lin28B and C-myc might be involved in the occurrence and development of LSCC.
Humans
;
Squamous Cell Carcinoma of Head and Neck
;
Proto-Oncogene Proteins c-myc/metabolism*
;
Laryngeal Neoplasms/diagnosis*
;
Carcinoma, Squamous Cell/genetics*
;
Lymphatic Metastasis
;
Prognosis
;
Head and Neck Neoplasms
;
Biomarkers, Tumor/metabolism*
;
RNA-Binding Proteins/genetics*
3.Effect of Morus alba extract sanggenon C on growth and proliferation of glioblastoma cells.
Wen-Han TANG ; Zhi-Ning ZHANG ; Hua-Rui CAI ; Wei SUN ; He YANG ; Er-Hu ZHAO ; Hong-Juan CUI
China Journal of Chinese Materia Medica 2023;48(1):211-219
Glioblastoma is the most common primary cranial malignancy, and chemotherapy remains an important tool for its treatment. Sanggenon C(San C), a class of natural flavonoids extracted from Morus plants, is a potential antitumor herbal monomer. In this study, the effect of San C on the growth and proliferation of glioblastoma cells was examined by methyl thiazolyl tetrazolium(MTT) assay and 5-bromodeoxyuridinc(BrdU) labeling assay. The effect of San C on the tumor cell cycle was examined by flow cytometry, and the effect of San C on clone formation and self-renewal ability of tumor cells was examined by soft agar assay. Western blot and bioinformatics analysis were used to investigate the mechanism of the antitumor activity of San C. In the presence of San C, the MTT assay showed that San C significantly inhibited the growth and proliferation of tumor cells in a dose and time-dependent manner. BrdU labeling assay showed that San C significantly attenuated the DNA replication activity in the nucleus of tumor cells. Flow cytometry confirmed that San C blocked the cell cycle of tumor cells in G_0/G_1 phase. The soft agar clone formation assay revealed that San C significantly attenuated the clone formation and self-renewal ability of tumor cells. The gene set enrichment analysis(GSEA) implied that San C inhibited the tumor cell division cycle by affecting the myelocytomatosis viral oncogene(MYC) signaling pathway. Western blot assay revealed that San C inhibited the expression of cyclin through the regulation of the MYC signaling pathway by lysine demethylase 4B(KDM4B), which ultimately inhibited the growth and proliferation of glioblastoma cells and self-renewal. In conclusion, San C exhibits the potential antitumor activity by targeting the KDM4B-MYC axis to inhibit glioblastoma cell growth, proliferation, and self-renewal.
Humans
;
Glioblastoma/genetics*
;
Bromodeoxyuridine/therapeutic use*
;
Signal Transduction
;
Proto-Oncogene Proteins c-myc/metabolism*
;
Agar
;
Cell Proliferation
;
Cell Line, Tumor
;
Apoptosis
;
Jumonji Domain-Containing Histone Demethylases/metabolism*
4.Research progress on role of traditional Chinese medicine in hepatic fibrosis based on miRNA-mediated activation of NLRP3 inflammasome.
Xin-Hua GUO ; Yang ZHENG ; Jia-Hui WANG ; Hong-Hong WANG ; Shu-Juan LUO ; Na HUANG ; Tie-Jian ZHAO ; Bo-Wen ZHENG ; Xin-Yun LIANG ; Ri-Zhou WU ; Qiu-Yi REN
China Journal of Chinese Materia Medica 2022;47(9):2409-2418
In recent years, liver fibrosis has become a hotspot in the field of liver diseases. MicroRNA(miRNA)-mediated Nod-like receptor pyrin domain containing 3(NLRP3) inflammasome activation is pivotal in the pathogenesis of liver fibrosis. The present study mainly discussed the role of miRNA-mediated NLRP3 inflammasome activation in the pathogenesis of liver fibrosis. Different miRNA molecules regulated liver fibrosis by mediating NLRP3 inflammasome activation, including miRNA-350-3 p(miR-350-3 p)/interleukin-6(IL-6)-mediated signal transducer and activator of transcription 3(STAT3)/c-myc signaling pathway, miR-148 a-induced autophagy and apoptosis of hepatic stellate cells via hedgehog signaling pathway, miR-155-mediated NLRP3 inflammasome by the negative feedback of the suppressor of cytokine signaling-1(SOCS-1), miR-181 a-mediated downstream NLRP3 inflammatory pathway activation through mitogen-activated protein kinase kinase(MEK)/extracellular signal-regulated kinase(ERK)/nuclear transcription factor κB(NF-κB) inflammatory pathway, miR-21-promoted expression of NF-κB and NLRP3 of RAW264.7 cells in mice by inhibiting tumor necrosis factor-α inducible protein 3(A20), and miR-20 b-promoted expression of IL-1β and IL-18 by activating NLRP3 signaling pathway. Additionally, the anti-liver fibrosis mechanism of different active components in Chinese medicines(such as Curcumae Rhizoma, Glycyrrhizae Radix et Rhizoma, Aurantii Fructus, Polygoni Cuspidati Rhizoma et Radix, Moutan Cortex, Paeoniae Radix Alba, Epimedii Folium, and Cinnamomi Cortex) was also explored based on the anti-liver fibrosis effect of miRNA-mediated NLRP3 inflammasome activation.
Animals
;
Hedgehog Proteins
;
Inflammasomes/metabolism*
;
Interleukin-6
;
Liver Cirrhosis/metabolism*
;
Medicine, Chinese Traditional
;
Mice
;
MicroRNAs/genetics*
;
NF-kappa B/metabolism*
;
NLR Family, Pyrin Domain-Containing 3 Protein/metabolism*
;
Proto-Oncogene Proteins c-myc/metabolism*
;
Signal Transduction
6.Clinical Significance of P53, C-MYC and BCL-6 Abnormality in Patients with Diffuse Large B Cell Lymphoma.
Cheng-Guo CHAI ; Jian-Jun ZHANG ; Ning LI ; Lei CAO ; Shuang-Yang ZHANG
Journal of Experimental Hematology 2016;24(1):89-93
OBJECTIVETo study the clinical significance of P53, C-MYC and BCL-6 abnormality in the patients with diffuse large B cell lymphoma (DLBCL).
METHODSFrom July 2011 to January 2013, 80 patients with DLBCL were admitted in our hospital and were chosen as study objects, their clinical data were collected. The abnormality of P53, C-MYC and BCL-6 was examined by using I-FISH for all the patients. The correlation of abnormality of P53, C-MYC and BCL-6 with clinical staging, curative efficacy and prognosis of the patients were analyzed.
RESULTSOut of 80 patients 27 patients (33.75%) had P53 deletion, 24 patients (30.00%) had C-MYC rearrangement/amplification, and 46 patients (57.50%) had BCL-6 rearrangement. The P53 deletion, C-MYC rearrangement/amplification and BCL-6 rearrangement significantly correlated with staging, curative effect and prognosis of the patients (P < 0.05).
CONCLUSIONThe curative efficacy and prognosis of the DLBCL patients with abnormality of P53, C-MYC and BCL-6 have been confirmed to be unsatisfactory.
DNA-Binding Proteins ; genetics ; metabolism ; Humans ; In Situ Hybridization, Fluorescence ; Lymphoma, Large B-Cell, Diffuse ; diagnosis ; genetics ; metabolism ; Prognosis ; Proto-Oncogene Proteins c-bcl-6 ; Proto-Oncogene Proteins c-myc ; genetics ; metabolism ; Tumor Suppressor Protein p53 ; genetics ; metabolism
7.Thymosin β4 impeded murine stem cell proliferation with an intact cardiovascular differentiation.
Li NIE ; Shi-Jun GAO ; Ya-Nan ZHAO ; Jacob MASIKA ; Hong-Yan LUO ; Xin-Wu HU ; Liang-Pin ZHANG ; Ying ZENG ; Jürgen HESCHELER ; Hua-Min LIANG
Journal of Huazhong University of Science and Technology (Medical Sciences) 2016;36(3):328-334
Thymosin β4 (Tβ4) is a key factor in cardiac development, growth, disease, epicardial integrity, blood vessel formation and has cardio-protective properties. However, its role in murine embryonic stem cells (mESCs) proliferation and cardiovascular differentiation remains unclear. Thus we aimed to elucidate the influence of Tβ4 on mESCs. Target genes during mESCs proliferation and differentiation were detected by real-time PCR or Western blotting, and patch clamp was applied to characterize the mESCs-derived cardiomyocytes. It was found that Tβ4 decreased mESCs proliferation in a partial dose-dependent manner and the expression of cell cycle regulatory genes c-myc, c-fos and c-jun. However, mESCs self-renewal markers Oct4 and Nanog were elevated, indicating the maintenance of self-renewal ability in these mESCs. Phosphorylation of STAT3 and Akt was inhibited by Tβ4 while the expression of RAS and phosphorylation of ERK were enhanced. No significant difference was found in BMP2/BMP4 or their downstream protein smad. Wnt3 and Wnt11 were remarkably decreased by Tβ4 with upregulation of Tcf3 and constant β-catenin. Under mESCs differentiation, Tβ4 treatment did not change the expression of cardiovascular cell markers α-MHC, PECAM, and α-SMA. Neither the electrophysiological properties of mESCs-derived cardiomyocytes nor the hormonal regulation by Iso/Cch was affected by Tβ4. In conclusion, Tβ4 suppressed mESCs proliferation by affecting the activity of STAT3, Akt, ERK and Wnt pathways. However, Tβ4 did not influence the in vitro cardiovascular differentiation.
Animals
;
Cell Cycle
;
drug effects
;
genetics
;
Cell Differentiation
;
drug effects
;
Cell Movement
;
drug effects
;
Cell Proliferation
;
drug effects
;
Dose-Response Relationship, Drug
;
Extracellular Signal-Regulated MAP Kinases
;
genetics
;
metabolism
;
Gene Expression Regulation
;
drug effects
;
JNK Mitogen-Activated Protein Kinases
;
genetics
;
metabolism
;
Mice
;
Mouse Embryonic Stem Cells
;
cytology
;
drug effects
;
metabolism
;
Myocytes, Cardiac
;
cytology
;
drug effects
;
metabolism
;
Nanog Homeobox Protein
;
genetics
;
metabolism
;
Octamer Transcription Factor-3
;
genetics
;
metabolism
;
Patch-Clamp Techniques
;
Primary Cell Culture
;
Proto-Oncogene Proteins c-akt
;
genetics
;
metabolism
;
Proto-Oncogene Proteins c-fos
;
genetics
;
metabolism
;
Proto-Oncogene Proteins c-myc
;
genetics
;
metabolism
;
STAT3 Transcription Factor
;
genetics
;
metabolism
;
Signal Transduction
;
Thymosin
;
pharmacology
8.Silencing of Long Non-Coding RNA MALAT1 Promotes Apoptosis of Glioma Cells.
Jianping XIANG ; Shifeng GUO ; Shuling JIANG ; Yuelong XU ; Jiwei LI ; Li LI ; Jinyu XIANG
Journal of Korean Medical Science 2016;31(5):688-694
The metastasis-associated lung adenocarcinoma transcription 1 (MALAT1) is a highly conserved long non-coding RNA (lncRNA) gene. However, little is known about the pathological role of lncRNA MALAT1 in glioma. In the present study, we explored the expression level of lncRNA MALAT1 in primary glioma tissues as well as in U87 and U251 glioma cell lines. Using qRT-PCR, we found that the expression of lncRNA MALAT1 was significantly increased in glioma tissues compared with that of paracancerous tissues. Meanwhile, the expression of MALAT1 was highly expressed in U98 and U251 cells. In order to explore the function of MALAT1, the expression of MALAT1 was greatly reduced in U87 and U251 cells transfected with siRNA specifically targeting MALAT1. Consequently, cell viability of U87 and U251 cells were drastically decreased after the knockdown of MALAT1. Concomitantly, the apoptosis rate of the two cell lines was dramatically increased. Furthermore, the expression levels of some tumor markers were reduced after the knockdown of MALAT1, such as CCND1 and MYC. In summary, the current study indicated a promoting role of MALAT1 in the development of glioma cell.
*Apoptosis
;
Biomarkers, Tumor/genetics/metabolism
;
Blotting, Western
;
Cell Line, Tumor
;
Cell Movement
;
Cell Proliferation
;
Cyclin D1/genetics/metabolism
;
Down-Regulation
;
Flow Cytometry
;
Glioma/metabolism/pathology
;
Humans
;
Proto-Oncogene Proteins c-myc/genetics/metabolism
;
*RNA Interference
;
RNA, Long Noncoding/antagonists & inhibitors/genetics/*metabolism
;
RNA, Small Interfering/metabolism
;
Real-Time Polymerase Chain Reaction
9.Effect of PDK1 on Notch1-Induced Mouse T-cell Acute Lymphoblastic Leukemia.
Le WANG ; Tian-Yuan HU ; Xing CHEN ; Cong LI ; Hui-Dong GUO ; Ya-Jing CHU ; Xiao-Min WANG ; Wei-Li WANG ; Tao CHENG ; Wei-Ping YUAN
Journal of Experimental Hematology 2016;24(3):637-642
OBJECTIVETo explore the role of PDK1 in T-ALL development through establishing the Notch1-induced T-ALL mouse model by using Mx1-cre; LoxP system to knock-out PDK1.
METHODSCell cycle and apoptosis of leukemic cells were detected by flow cytometry, and relative expression of tumor-related genes and transcription factors of leukemic cells were determined by quantitative real-time PCR.
RESULTSNotch1-induced T-ALL mouse model with inducible knock-out of PDK1 was established successfully. Compared to T-ALL control mouse model, PDK1 knock-out mice showed a significant longer survival time (P<0.01). There was no difference of cell cycle between control and PDK1 knock-out mice, and the apoptosis rate of leukemic cells in PDK1 knock-out mice was higher than that of control mice (P<0.001). PDK1 knock-out resulted in decreased expression of tumor-related genes and transcription factors, such as c-Myc and NF-κB (P<0.01), and increased expression level of P53 (P<0.01).
CONCLUSIONPDK1 knock-out can inhibit the development of T-ALL, and its mechanism may be the leukemia progression inhibited by regulating the apoptosis and expression of multiple related genes and transcription factors.
Animals ; Apoptosis ; Cell Cycle ; Disease Models, Animal ; Gene Expression Regulation, Leukemic ; Mice ; Mice, Knockout ; NF-kappa B ; genetics ; metabolism ; Precursor T-Cell Lymphoblastic Leukemia-Lymphoma ; genetics ; Protein-Serine-Threonine Kinases ; genetics ; Proto-Oncogene Proteins c-myc ; genetics ; metabolism ; Real-Time Polymerase Chain Reaction ; Receptor, Notch1 ; genetics ; Tumor Suppressor Protein p53 ; genetics ; metabolism
10.beta-TrCP1 degradation is a novel action mechanism of PI3K/mTOR inhibitors in triple-negative breast cancer cells.
Yong Weon YI ; Hyo Jin KANG ; Edward Jeong BAE ; Seunghoon OH ; Yeon Sun SEONG ; Insoo BAE
Experimental & Molecular Medicine 2015;47(2):e143-
An F-box protein, beta-TrCP recognizes substrate proteins and destabilizes them through ubiquitin-dependent proteolysis. It regulates the stability of diverse proteins and functions as either a tumor suppressor or an oncogene. Although the regulation by beta-TrCP has been widely studied, the regulation of beta-TrCP itself is not well understood yet. In this study, we found that the level of beta-TrCP1 is downregulated by various protein kinase inhibitors in triple-negative breast cancer (TNBC) cells. A PI3K/mTOR inhibitor PI-103 reduced the level of beta-TrCP1 in a wide range of TNBC cells in a proteasome-dependent manner. Concomitantly, the levels of c-Myc and cyclin E were also downregulated by PI-103. PI-103 reduced the phosphorylation of beta-TrCP1 prior to its degradation. In addition, knockdown of beta-TrCP1 inhibited the proliferation of TNBC cells. We further identified that pharmacological inhibition of mTORC2 was sufficient to reduce the beta-TrCP1 and c-Myc levels. These results suggest that mTORC2 regulates the stability of beta-TrCP1 in TNBC cells and targeting beta-TrCP1 is a potential approach to treat human TNBC.
Cell Line, Tumor
;
Cell Proliferation
;
Cell Survival/drug effects
;
Cyclin E/genetics/metabolism
;
Dose-Response Relationship, Drug
;
Female
;
Furans/pharmacology
;
Gene Knockdown Techniques
;
Humans
;
Models, Biological
;
Multiprotein Complexes/antagonists & inhibitors
;
Phosphatidylinositol 3-Kinases/*antagonists & inhibitors
;
Phosphorylation/drug effects
;
Protein Kinase Inhibitors/*pharmacology
;
Proteolysis/drug effects
;
Proto-Oncogene Proteins c-myc/genetics/metabolism
;
Pyridines/pharmacology
;
Pyrimidines/pharmacology
;
TOR Serine-Threonine Kinases/*antagonists & inhibitors
;
Triple Negative Breast Neoplasms/genetics/*metabolism
;
beta-Transducin Repeat-Containing Proteins/genetics/*metabolism

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