1.Effect of circ-SFMBT2 on the biological behavior of non-small cell lung cancer cells by targeting the miR-7-5p/ADAM10 axis.
Changsheng LI ; Guanping ZHANG ; Zhonghai REN
Chinese Journal of Medical Genetics 2022;39(2):162-170
OBJECTIVE:
To explore the effect of circ-SFMBT2 on the biological behavior of non-small cell lung cancer (NSCLC) cells and its regulatory role on the miR-7-5p/ADAM10 axis.
METHODS:
qRT-PCR and Western blotting were used to determine the expression of circ-SFMBT2, miR-7-5p, and ADAM10 in NSCLC tissues and adjacent tissues. Pearson analysis was used to analyze the correlation between circ-SFMBT2 and miR-7-5p, and between miR-7-5p and ADAM10. In vitro cultured human bronchial epithelial-like cells (HBE) and lung cancer cell lines H1650, H460, A549, H1299. CCK-8 and EdU methods were used to assess the ability of cell proliferation. Plate experiment was used to detect the clone formation ability. Flow cytometry was used to detect the apoptosis rate. Transwell experiment was used to detect cell invasion ability. Dual luciferase reporter experiment detects the targeting relationship between circ-SFMBT2 and miR-7-5p, and between miR-7-5p and ADAM10. Transplanted tumor experiment in nude mice assessed the effect of knocking down circ-SFMBT2 on the growth of transplanted tumor. Immunohistochemical experiments were performed to detect the positive rates of ADAM10 and Ki67 proteins in transplanted tumor tissues.
RESULTS:
The expression levels of circ-SFMBT2 and ADAM10 were increased in NSCLC tissues and cell lines, while decreased the expression of miR-7-5p. circ-SFMBT2 was negatively correlated with miR-7-5p, while miR-7-5p was negatively correlated with ADAM10. Silencing the overexpression of circ-SFMBT2 and miR-7-5p could inhibit cell proliferation, clone formation and invasion, and also promote apoptosis. circ-SFMBT2 could target miR-7-5p, and ADAM10 was the target gene of miR-7-5p. The combined effect of silencing circ-SFMBT2 and inhibition of miR-7-5p, as well as miR-7-5p overexpression and ADAM10 overexpression could promote cell proliferation, clone formation and invasion, and also suppress cell apoptosis. Silencing circ-SFMBT2 could inhibit the growth of transplanted tumors.
CONCLUSION
Silencing circ-SFMBT2 can suppress the proliferation, clone formation, invasion ability and induce apoptosis of NSCLC cells by regulating the miR-7-5p/ADAM10 axis.
ADAM10 Protein/genetics*
;
Amyloid Precursor Protein Secretases/genetics*
;
Animals
;
Carcinoma, Non-Small-Cell Lung/genetics*
;
Cell Proliferation
;
Lung Neoplasms/genetics*
;
Membrane Proteins/genetics*
;
Mice
;
Mice, Nude
;
MicroRNAs/genetics*
;
RNA, Circular
;
Repressor Proteins
2.Cloning of mouse adam10 gene promoter and construction and identification of dual luciferase reporter system.
Wei CHEN ; Chong CHEN ; Huan-Xin ZHANG ; Jiang CAO ; Wei SANG ; Qing-Yun WU ; Kai ZHAO ; Yu ZANG ; Ling-Yu ZENG ; Kai-Lin XU
Journal of Experimental Hematology 2012;20(3):740-743
This study was aimed to clone mouse adam10 gene promoter and construct its dual luciferase report vector, and to investigate its transcriptional activity. Total DNA was extracted from mouse brain and used for amplifying the fragment containing adam10 gene promoter by PCR. The amplified product was inserted into pGL-4.10 vector to construct pGL4.10-adam10. The pGL4.10-adam10 and control plasmid pGL4.74 were co-transfected into HEK293 FT cells by lipofectamine 2000. The activity of adam10 gene promoter was assayed by luciferase system. The results showed that the recombinant plasmid pGL4.10-adam10 containing promoter of mouse adam10 was correctly constructed. The method was optimized by changing ratio of two plasmids. Moreover, the transcriptional activity of pGL4.10-adam10 stimulated by ionomycin increased. It is concluded that the dual luciferase reporter system is successfully established, which is useful in bioluminescence imaging technology in vitro. The effect of ionomycin can enhance the transcriptional activity of adam10 gene promoter.
ADAM Proteins
;
genetics
;
ADAM10 Protein
;
Amyloid Precursor Protein Secretases
;
genetics
;
Animals
;
Cell Line
;
Cloning, Organism
;
Genes, Reporter
;
Genetic Vectors
;
Luciferases
;
genetics
;
Membrane Proteins
;
genetics
;
Mice
;
Mice, Inbred BALB C
;
Plasmids
;
Promoter Regions, Genetic
3.Effect of Panax notoginseng saponins on expression of alpha-secretase mRNA in brains of senescence-accelerated SAMP8 mice.
Jinlan HUANG ; Fei LI ; Dengpan WU ; Lu LU ; Yiwen GAO ; Zhenguo ZHONG
China Journal of Chinese Materia Medica 2012;37(14):2127-2129
OBJECTIVETo study the effect of Panax notoginseng saponins (PNS) on expression of alpha-aecretase mRNA in the brains of senescence-accelerated SAMP8 mice.
METHODSAMP8 mice were randomly divided into the control group, the PNS high-dosage group (200 mg x kg(-1)), the PNS low-dosage group (100 mg x kg(-1)) and the huperzine A group (0.3 mg x kg(-1)), with eight mice in each group. The control group and each administration group were orally administered with the same volume of double distilled water once for consecutively two months. The expression of alpha-secretase (ADAM 9, ADAM10, ADAM17) mRNA was assayed by real-time fluorescence quantitative polymerase chain reaction (Real-time PCR).
RESULTThe expression of ADAM9 mRNA in PNS high-dosage group and huperzine A group were significantly higher than that of the control group (P < 0.05). The expression of ADAM10 in the PNS high-dosage group, the PNS low-dosage group and the huperzine A group showed no significant difference from the control group.
CONCLUSIONPNS can up-regulate expressions of ADAM9 mRNA and down-regulate expressions of ADAM10 mRNA in the brains of SAMP8 mice.
ADAM Proteins ; genetics ; ADAM10 Protein ; Alzheimer Disease ; drug therapy ; metabolism ; Amyloid Precursor Protein Secretases ; genetics ; Animals ; Disease Models, Animal ; Gene Expression Regulation, Enzymologic ; drug effects ; Membrane Proteins ; genetics ; Mice ; Panax notoginseng ; RNA, Messenger ; analysis ; Saponins ; pharmacology
4.Role of ADAM10 and ADAM17 in CD16b shedding mediated by different stimulators.
Sha GUO ; Min PENG ; Qing ZHAO ; Wei ZHANG
Chinese Medical Sciences Journal 2012;27(2):73-79
OBJECTIVETo investigate the main proteinases responsible for CD16b shedding under different stimulators.
METHODSHEK293 cell line stably expressing CD16b was constructed by lentivirus system. The cell line was then overexpressed with a disintegrin and metalloproteinase 10 (ADAM10) or ADAM17, suppressed with short hairpin RNA of ADAM10 or ADAM17, and reconstituted with ADAM10 or ADAM17, respectively. After each treatment, the cell line was stimulated with ionomycin or phorbol 12-myristate- 13-acetate (PMA) for 12 hours. The soluble CD16b released from cell membrane was detected by immunoprecipition and immunoblot. Quantitation was then implemented to compare the amount of soluble CD16b in cell supernatant after stimulation.
RESULTSHEK293 cell line stably expressing CD16b was successfully established. When CD16b expressing cell line was overexpressed with ADAM10, shedding of CD16b was increased after stimulation with ionomycin but not PMA; when the cell line overexpressed with ADAM17, shedding of CD16b was increased after stimulation with PMA but not ionomycin. Similarly, when ADAM10 was suppressed by short hairpin RNA, CD16b shedding was decreased after stimulation with ionomycin; when ADAM17 was suppressed by short hairpin RNA, CD16b shedding was decreased after stimulation with PMA. The shedding of CD16b was increased again when CD16b expressing cell line was reconstituted with ADAM10 and stimulated by ionomycin or reconstituted with ADAM17 and stimulated by PMA.
CONCLUSIONSBoth ADAM10 and ADAM17 could shed CD16b, but they possess differed preferences. ADAM10 is the main sheddase under stimulation of ionomycin, while ADAM17 is the main sheddase under stimulation of PMA.
ADAM Proteins ; genetics ; metabolism ; physiology ; ADAM10 Protein ; ADAM17 Protein ; Amyloid Precursor Protein Secretases ; genetics ; metabolism ; physiology ; Calcium Ionophores ; pharmacology ; Carcinogens ; pharmacology ; Cells, Cultured ; Drug Evaluation, Preclinical ; GPI-Linked Proteins ; metabolism ; Gene Knockdown Techniques ; HEK293 Cells ; Humans ; Ionomycin ; pharmacology ; Membrane Proteins ; genetics ; metabolism ; physiology ; Protein Processing, Post-Translational ; drug effects ; Protein Transport ; drug effects ; Proteolysis ; drug effects ; Receptors, IgG ; metabolism ; Tetradecanoylphorbol Acetate ; pharmacology ; Transfection
5.Correlations Between Single Nucleotide Polymorphisms, Cognitive Dysfunction, and Postmortem Brain Pathology in Alzheimer's Disease Among Han Chinese.
Qian YANG ; Kang CHEN ; Hanlin ZHANG ; Wanying ZHANG ; Changlin GONG ; Qing ZHANG ; Pan LIU ; Tianyi SUN ; Yuanyuan XU ; Xiaojing QIAN ; Wenying QIU ; Chao MA
Neuroscience Bulletin 2019;35(2):193-204
In this study, the distribution of five Alzheimer's disease (AD)-related single nucleotide polymorphisms (SNPs) in the Han population was examined in combination with the evaluation of clinical cognition and brain pathological analysis. The associations among SNPs, clinical daily cognitive states, and postmortem neuropathological changes were analyzed in 110 human brains from the Chinese Academy of Medical Sciences/Peking Union Medical College (CAMS/PUMC) Human Brain Bank. APOE ε4 (OR = 4.482, P = 0.004), the RS2305421 GG genotype (adjusted OR = 4.397, P = 0.015), and the RS10498633 GT genotype (adjusted OR = 2.375, P = 0.028) were associated with a higher score on the ABC (Aβ plaque score, Braak NFT stage, and CERAD neuritic plaque score) dementia scale. These results advance our understanding of the pathogenesis of AD, the relationship between pathological diagnosis and clinical diagnosis, and the SNPs in the Han population for future research.
ADAM10 Protein
;
genetics
;
Adult
;
Aged
;
Aged, 80 and over
;
Alzheimer Disease
;
genetics
;
pathology
;
Amyloid Precursor Protein Secretases
;
genetics
;
Antiporters
;
genetics
;
Apolipoprotein E4
;
genetics
;
Asian Continental Ancestry Group
;
genetics
;
Brain
;
pathology
;
Cognitive Dysfunction
;
genetics
;
pathology
;
Female
;
Genetic Predisposition to Disease
;
Humans
;
Male
;
Membrane Proteins
;
genetics
;
Middle Aged
;
Polymorphism, Single Nucleotide