1.Expression and Biological Function of SPOP in Acute Myeloid Leukemia.
Xue-Ying WAN ; Jing XU ; Xiao-Li LIU ; Hong-Wei WANG
Journal of Experimental Hematology 2025;33(1):32-38
OBJECTIVE:
To study the expression of SPOP in patients with acute myeloid leukemia (AML) and its effect on proliferation, apoptosis and cycle of AML cells.
METHODS:
RT-qPCR was used to detect the expression of SPOP mRNA in bone marrow samples of patients with newly diagnosed AML and normal controls. The stable overexpression of SPOP in AML cell lines THP-1 and U937 were constructed by liposome transfection. The effect of SPOP on cell proliferation was detected by CCK-8, and the effect of SPOP on apoptosis and cell cycle was detected by flow cytometry. The expressions of anti-apoptotic protein Bcl-2 and apoptotic protein Bax, Caspase3 were detected by Western blot.
RESULTS:
The median expression level of SPOP mRNA in normal control group was 0.993 1(0.6303, 1.433), while that in AML group was 0.522 1(0.242 2, 0.723 7). The expression level of SPOP in AML group was significantly lower than that in normal control group ( P < 0.001). After the overexpression of SPOP, the proportion of apoptotic cells in the U937 overexpression group and THP-1 overexpression group was 10.9%±0.3% and 4.6%±015%, which were higher than 8.9%±0.3% and 3.0%±0.30% in the Empty Vector group, respectively (both P < 0.05). The expression of Caspase3 in U937 overexpression group and THP-1 overexpression group was 1.154±0.086 and 1.2±0.077, which were higher than 1 in Empty Vector group, respectively (both P < 0.05). The ratio of Bax/Bcl-2 in U937 overexpression group and THP-1 overexpression group was 1.328±0.057 and 1.669±0.15, which were higher than 1 in Empty Vector group, respectively (both P < 0.05). In the cell proliferation experiment, the number of cells in the U937 overexpression group and THP-1 overexpression group were both slightly lower than those in the Empty Vector group, but the differences were not statistically significant (P >0.05). In the cell cycle experiment, the proportion of G1 cells in the U937 overexpression group and THP-1 overexpression group were both slightly higher than those in the Empty Vector group, but the differences were not statistically significant (P >0.05).
CONCLUSION
SPOP can promote the apoptosis of leukemic cells, and its mechanism may be related to down-regulation of Bcl-2 expression and up-regulation of Bax and Caspase3 expression.
Humans
;
Leukemia, Myeloid, Acute/pathology*
;
Apoptosis
;
Repressor Proteins/genetics*
;
Cell Proliferation
;
Nuclear Proteins/genetics*
;
Cell Cycle
;
Proto-Oncogene Proteins c-bcl-2/metabolism*
;
Caspase 3/metabolism*
;
bcl-2-Associated X Protein/metabolism*
;
U937 Cells
;
Cell Line, Tumor
;
RNA, Messenger/genetics*
2.Effect of LINC00641 on Viability and Apoptosis of Acute Myeloid Leukemia Cells.
Yun-Ling ZHANG ; Ying YANG ; Yin SUN ; Hong-Li CHAI
Journal of Experimental Hematology 2025;33(4):998-1006
OBJECTIVE:
To investigate the effect of LINC00641 on the viability and apoptosis of acute myeloid leukemia (AML) cells and its mechanism.
METHODS:
RT-qPCR was applied to detect the relative expression levels of LINC00641, miR-204-5p, and MT1X in human normal bone marrow stromal cell lines HS-5 and AML cell lines, and to screen the optimal cell line THP-1 was screened for subsequent experiments. Bioinformatics, dual luciferase reporter assay, pull down assay, and RIP assay were applied to validate the targeting relationship between LINC00641, MT1X and miR-204-5p. EdU, CCK-8, flow cytometry, and Transwell assay were applied to detect cell proliferation, apoptosis, migration and invasion, respectively. Western blot was applied to detect the expression of MT1X , CyclinD1, Bcl-2, and Bax proteins.
RESULTS:
Compared with HS-5 cells, the expression of LINC00641 and MT1X was obviously increased in HL60, THP-1, U937, and KG1 cells, while the expression of miR-204-5p was obviously reduced (all P <0.05). THP-1 cells showed the most obvious changes (P <0.05). Silencing LINC00641 or overexpressing miR-204-5p was able to obviously inhibit the proliferation, migration and invasion of THP-1 cells, as well as the expression of CyclinD1 and Bcl-2 proteins, while promote cells apoptosis and Bax protein expression (all P <0.05). Bioinformatics analysis, dual luciferase reporter assay, pull down assay, and RIP assay all confirmed that there were targeted relationships between LINC00641, MT1X and miR-204-5p. Inhibiting miR-204-5p or overexpressing MT1X was able to respectively reverse the inhibitory effect of silencing LINC00641 or overexpressing miR-204-5p on THP-1 cells proliferation, migration and invasion, and reduce cells apoptosis.
CONCLUSION
LINC00641 is highly expressed in AML, and inhibition of LINC00641 expression can inhibit cell proliferation, migration, and invasion and increase apoptosis by regulating the miR-204-5p/MT1X axis.
Humans
;
Apoptosis
;
Leukemia, Myeloid, Acute/pathology*
;
MicroRNAs
;
Cell Proliferation
;
RNA, Long Noncoding/genetics*
;
Cell Movement
;
Cell Survival
;
Cell Line, Tumor
;
HL-60 Cells
3.Effects of Down-regulation of NCL Expression on the Biological Behavior of Acute Myeloid Leukemia Kasumi-1 Cells.
Hui-Li LIU ; Wen-Xin XU ; Yang-Yan CAI ; Hong-Mei LI
Journal of Experimental Hematology 2025;33(5):1312-1317
OBJECTIVE:
To investigate the role of nucleolin (NCL) in acute myeloid leukemia (AML) Kasumi-1 cells and its underlying mechanism.
METHODS:
The Kasumi-1 cells were infected with lentivirus carrying shRNA to downregulate NCL expression. Cell proliferation was detected by CCK-8 assay, and cell apoptosis and cell cycle were determined by flow cytometry. Transcriptome next-generation sequencing (NGS) was performed to predict associated signaling pathways, the expression levels of related genes were measured by RT-PCR.
RESULTS:
Down-regulation of NCL expression significantly inhibited the proliferation of Kasumi-1 cells (P <0.01) and markedly increased the apoptosis rate (P <0.001). Cell cycle analysis showed significant changes in the distribution of cells in the G1 and S phases after NCL knockdown (P <0.05), while no significant difference was observed in the G2 phase (P >0.05). Transcriptome sequencing analysis demonstrated that differentially expressed genes in Kasumi-1 cells with low expression of NCL were primarily enriched in key signaling pathways, including ribosome, spliceosome, RNA transport, cell cycle, and amino acid biosynthesis. qPCR validation showed that the expression of BAX, CASP3, CYCS, PMAIP1, TP53 , and CDKN1A was significantly upregulated after NCL downregulation (P <0.05), with CDKN1A exhibiting the most pronounced difference.
CONCLUSION
NCL plays a critical role in regulating the proliferation, apoptosis, and cell cycle progression of Kasumi-1 cells. The mechanism likely involves suppressing cell cycle progression through activation of the TP53-CDKN1A pathway and promoting apoptosis by upregulating apoptosis-related genes.
Humans
;
Leukemia, Myeloid, Acute/pathology*
;
Down-Regulation
;
Cell Proliferation
;
Apoptosis
;
RNA-Binding Proteins/genetics*
;
Nucleolin
;
Cell Line, Tumor
;
Phosphoproteins/metabolism*
;
Cell Cycle
;
Signal Transduction
;
RNA, Small Interfering
4.JMJD1C forms condensate to facilitate a RUNX1-dependent gene expression program shared by multiple types of AML cells.
Qian CHEN ; Saisai WANG ; Juqing ZHANG ; Min XIE ; Bin LU ; Jie HE ; Zhuoran ZHEN ; Jing LI ; Jiajun ZHU ; Rong LI ; Pilong LI ; Haifeng WANG ; Christopher R VAKOC ; Robert G ROEDER ; Mo CHEN
Protein & Cell 2025;16(5):338-364
JMJD1C (Jumonji Domain Containing 1C), a member of the lysine demethylase 3 (KDM3) family, is universally required for the survival of several types of acute myeloid leukemia (AML) cells with different genetic mutations, representing a therapeutic opportunity with broad application. Yet how JMJD1C regulates the leukemic programs of various AML cells is largely unexplored. Here we show that JMJD1C interacts with the master hematopoietic transcription factor RUNX1, which thereby recruits JMJD1C to the genome to facilitate a RUNX1-driven transcriptional program that supports leukemic cell survival. The underlying mechanism hinges on the long N-terminal disordered region of JMJD1C, which harbors two inseparable abilities: condensate formation and direct interaction with RUNX1. This dual capability of JMJD1C may influence enhancer-promoter contacts crucial for the expression of key leukemic genes regulated by RUNX1. Our findings demonstrate a previously unappreciated role for the non-catalytic function of JMJD1C in transcriptional regulation, underlying a mechanism shared by different types of leukemias.
Core Binding Factor Alpha 2 Subunit/genetics*
;
Humans
;
Leukemia, Myeloid, Acute/pathology*
;
Jumonji Domain-Containing Histone Demethylases/chemistry*
;
Gene Expression Regulation, Leukemic
;
Oxidoreductases, N-Demethylating/genetics*
;
Cell Line, Tumor
5.miR-181b-5p promotes cell proliferation and induces apoptosis in human acute myeloid leukemia by targeting PAX9.
Bin LI ; Qianshan TAO ; Xueying HU ; Tan LI ; Yangyi BAO
Chinese Journal of Cellular and Molecular Immunology 2023;39(12):1074-1082
Objective To investigate the effects of miR-181b-5p on cells proliferation and apoptosis in acute myeloid leukemia (AML) by targeting paired box 9 (PAX9). Methods The relationship between expression level of PAX9 and prognosis in AML patients was analyzed by gene expression profiling interactive analysis (GEPIA) database and The Cancer Genome Atlas (TCGA) database. Kasumi-1 and AML5 cells were transfected with empty vector (Vector group) or PAX9 (PAX9 group). The proliferation activity was detected by CCK-8 assay, and cells cycle and apoptosis were detected by flow cytometry. Expressions of cyclin-dependent kinase 2 (CDK2), cyclin B1 (CCNB1), B-cell lymphoma 2 (Bcl2) and Bcl2-associated X protein (BAX) were detected by Western blot analysis. The targeted microRNA (miRNA) by PAX9 was predicted by bioinformatics analysis, and the targeted effect was verified by luciferase reporter assay. The level of PAX9 mRNA was detected by real-time quantitative PCR, and expression of PAX9 protein was detected by Western blot analysis. Kasumi-1 and AML5 cells were transfected with miR-NC (miR-NC group) or miR-181b-5p (miR-181b-5p group). The cells were further transfected with PAX9 (miR-181b-5p combined with PAX9 group) in miR-181b-5p group. The proliferation, cycle and apoptosis of cells were detected by the above methods.Results GEPIA and TCGA databases showed that the expression of PAX9 was down-regulated in AML patients, which was correlated with poor prognosis. In Kasumi-1 and AML5 cells, compared with Vector group, proliferation activity of cells, percentage of cells in S phase, and expressions of CDK2, CCNB1 and Bcl2 proteins were decreased, while percentage of cells in G0/G1 phase, apoptosis rate and the expression of BAX protein were increased in PAX9 group. It was confirmed by double luciferase reporter assay that PAX9 was the target gene of miR-181b-5p. Compared with miR-NC group, proliferation activity of cells, percentage of cells in S phase, and expressions of CDK2, CCNB1 and Bcl2 proteins were increased, while percentage of cells in G0/G1 phase, apoptosis rate and the expression of BAX protein were decreased in miR-181b-5p group. Compared with miR-181b-5p group, proliferation activity of cells, percentage of cells in S phase, and expressions of CDK2, CCNB1 and Bcl2 proteins were decreased, while percentage of cells in G0/G1 phase, apoptosis rate and the expression of BAX protein were increased in miR-181b-5p combined with PAX9 group. Conclusion The miR-181b-5p can promote the proliferation of AML cells and delay apoptosis by inhibiting PAX9.
Humans
;
Apoptosis/genetics*
;
bcl-2-Associated X Protein
;
Cell Line, Tumor
;
Cell Proliferation/genetics*
;
Leukemia, Myeloid, Acute/pathology*
;
Luciferases
;
MicroRNAs/metabolism*
;
PAX9 Transcription Factor/genetics*
6.Immunophenotypic and Clinical Characteristics of SET-CAN Fusion Gene Positive Acute Leukemia Patients.
Song-Ya LIU ; Li ZHU ; Chun-Yan WANG ; Cheng HE ; Shu-Juan YI ; Li MENG ; Min XIAO ; Xia MAO
Journal of Experimental Hematology 2023;31(6):1639-1646
OBJECTIVE:
To analyze the flow immunophenotype and clinical characteristics of leukemia patients with positive SET-CAN fusion gene.
METHODS:
A total of 7 newly diagnosed acute leukemia patients with SET-CAN fusion gene admitted to Tongji Hospital, Tongji Medical College of Huazhong University of Science and Technology from February 2016 to February 2020 were collected. Multiplex reverse transcriptase-polymerase chain reaction (RT-PCR) was used to detect the expression of SET-CAN fusion gene. The immunophenotype was detected by four-color flow cytometry. The case information of 17 literatures published at home and abroad was extracted for statistical analysis.
RESULTS:
Among the 7 patients, 2 cases were diagnosed as mixed phenotype acute leukemia (MPAL), 2 cases as acute myeloid leukemia (AML), and 3 cases as T-acute lymphoblastic leukemia (ALL)/lymphoblastic lymphoma (LBL). Leukemia cells in bone marrow specimens of all cases expressed or partially expressed CD34, CD33 and CD7. CD5 and cytoplasmic CD3 were expressed in 5 patients except 2 patients diagnosed with AML. Bone marrow and lymph node specimens were both detected in 2 patients, and the immunophenotypes of the two specimens were not completely consistent, with differences in lineage or maturity related markers. Two patients with MPAL showed differentiated response to treatment. One AML patient gave up treatment, and another AML patient with FLT3-ITD gene mutation had a poor prognosis. All three T-ALL/LBL patients maintained a long duration of remission after induced remission, and one case underwent allogeneic hematopoietic stem cell transplantation.
CONCLUSIONS
There are common characteristics of immunophenotype in patients with positive SET-CAN fusion gene. Differential expression of immunophenotype in samples from different parts is observed in some cases. The prognosis of these diseases varies.
Humans
;
Leukemia, Myeloid, Acute/pathology*
;
Bone Marrow/pathology*
;
Precursor Cell Lymphoblastic Leukemia-Lymphoma/genetics*
;
Antigens, CD34
;
Precursor T-Cell Lymphoblastic Leukemia-Lymphoma
;
Immunophenotyping
7.Correlation between Expression of CD47 Molecule in Patients with Newly Diagnosed Adult Acute Myeloid Leukemia and Clinical Prognosis.
Jing PAN ; Yuan-Yuan ZHANG ; Xia-Xia JIAO ; Lei-Na SONG ; Cai-Qin LIN ; Su-Li WANG ; Bin ZHU ; Shao-Ying PAN ; Zhi-Yong DING ; Wen-Li ZHAO
Journal of Experimental Hematology 2022;30(4):1071-1078
OBJECTIVE:
To investigate the expression of CD47 molecules in patients with newly diagnosis of adult acute myeloid leukemia (AML) and its correlation with clinical prognosis.
METHODS:
20 patients with acute myeloid leukemia diagnosed in Shanghai Fengxian District Central hospital from April 2020 to October 2021 and 5 cases with non malignant hematological diseases in the control group were collected, and the expression of CD47 in single nuclear cells of bone marrow and peripheral blood was detected by real-time fluorescence quantitative polymerase chain reaction (qPCR). Combined with the blood image, bone marrow smears, flow cytometry, chromosome and gene detection, ECOG score, etc. during the patient's initial diagnosis, the relationship between the patient's prognosis and CD47 was evaluated.
RESULTS:
The expression of CD47 in bone marrow (P=0.0115) and peripheral blood mononuclear cells (P=0.0069) in new diagnosis AML patients was significantly higher than that of controls. In bone marrow mononuclear cells, the total survival time of patients with high CD47 expression was less than that of CD47 low expression patients (P=0.036). There was statistical significance in difference stratification group (P=0.012), but there was no statistical significance between CD47 expression and survival time in peripheral blood mononuclear cells (P=0.116). There were no statistical significance between bone marrow mononuclear cell CD47 expression and gene mutation fusion genes related to leukemia , CD34+, CD38+, CD123+ (P>0.05). The proportion of bone marrow protocells in AML patients was >50%, the ECOG score was >2 points, MLLELL fusion gene and chromosome prognosis stratification were all risk factors affecting the survival of patients (P=0023, 0.036, 0.012, 0.001, respectively). The high expression of bone marrow CD47 in AML patients indicated a high risk of recurrence (P=0.017).
CONCLUSION
The high expression of bone marrow mononuclear cell CD47 in AML patients indicates poorer survival and higher risk of recurrence.
Adult
;
CD47 Antigen
;
China
;
Humans
;
Leukemia, Myeloid, Acute/genetics*
;
Leukocytes, Mononuclear/pathology*
;
Prognosis
8.Aberrant DNA methylation and its targeted therapy in acute myeloid leukemia.
Xueying LI ; Lixia ZHU ; Xiujin YE
Journal of Zhejiang University. Medical sciences 2016;45(4):387-394
The occurrence and development of acute myeloid leukemia (AML) is not only related to gene mutations, but also influenced by abnormal epigenetic regulation, in which DNA methylation is one of the most important mechanisms. Abnormal DNA methylation may lead to the activation of oncogene and the inactivation of tumor suppressor gene, resulting in the occurrence of leukemia. The mutations of DNA methylation enzymes associated with AML may have certain characteristics. The AML with recurrent cytogenetic abnormalities is also related to abnormal methylation. Some fusion genes can alter DNA methylation status to participate in the pathogenesis of leukemia. In addition, chemotherapy drug resistance in patients with AML is associated with the change of gene methylation status. Considering the reversibility of the epigenetic modification, targeted methylation therapy has become a hotspot of AML research.
DNA Methylation
;
drug effects
;
genetics
;
physiology
;
DNA Modification Methylases
;
genetics
;
physiology
;
Drug Resistance, Neoplasm
;
genetics
;
Epigenesis, Genetic
;
genetics
;
physiology
;
Humans
;
Leukemia, Myeloid, Acute
;
etiology
;
genetics
;
pathology
;
Mutation
;
genetics
9.MiR-181a Promotes Proliferation of Human Acute Myeloid Leukemia Cells by Targeting ATM.
Jia-Ye HUA ; Ying FENG ; Ying PANG ; Xu-Hong ZHOU ; Bing XU ; Mu-Xia YAN
Journal of Experimental Hematology 2016;24(2):347-351
OBJECTIVETo investigate miR-181a function and regulation mechanism by identifying miR-181a target genes in acute myeloid leukemia (AML).
METHODSThe HL-60 cells of human AML was transfected by small molecular analog miR-181a, the cell proliferation was detected by CCK-8 method after electroporation in HL-60 cell lines. Target genes of miR-181a were predicted and analyzed by the bioinformatics software and database. Target genes were confirmed by HL-60 cell line and the patient leukemia cells.
RESULTSOverexpressed miR-181a in HL-60 cell line significantly enhanced cell proliferation compared with that in control (P < 0.05). Dual luciferase reporter gene assay showed that miR-181a significantly suppressed the reporter gene activity containing ATM 3'-UTR by about 56.8% (P < 0.05), but it didn't suppress the reporter gene activity containing 3'-UTR ATM mutation. Western blot showed that miR-181a significantly downregulated the expression of ATM in human leukemia cells. It is also found that miR-181a was significantly increased in AML, which showed a negative correlation with ATM expression.
CONCLUSIONmiR-181a promotes cell proliferation in AML by regulating the tumor suppressor ATM, thus it plays the role as oncogene in pathogenesis of AML.
Ataxia Telangiectasia Mutated Proteins ; metabolism ; Cell Proliferation ; Down-Regulation ; HL-60 Cells ; Humans ; Leukemia, Myeloid, Acute ; metabolism ; pathology ; MicroRNAs ; genetics ; metabolism ; Transfection
10.Minor BCR-ABL1-Positive Acute Myeloid Leukemia Associated With the NPM1 Mutation and FLT3 Internal Tandem Duplication.
Moon Jung KIM ; Sunhyun AHN ; Seong Hyun JEONG ; Ja Hyun JANG ; Jae Ho HAN ; Jong Rak CHOI ; Sung Ran CHO
Annals of Laboratory Medicine 2016;36(3):263-265
No abstract available.
Aged
;
Base Sequence
;
Bone Marrow/metabolism/pathology
;
DNA Mutational Analysis
;
Female
;
Fusion Proteins, bcr-abl/*genetics
;
Gene Duplication
;
Humans
;
In Situ Hybridization, Fluorescence
;
Leukemia, Myeloid, Acute/diagnosis/*genetics
;
Multiplex Polymerase Chain Reaction
;
Mutation
;
Nuclear Proteins/*genetics
;
Philadelphia Chromosome
;
fms-Like Tyrosine Kinase 3/*genetics

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