1.LncRNA STARD7-AS1 suppresses cervical cancer cell proliferation while promoting autophagy by regulating miR-31-5p/TXNIP axis to inactivate the mTOR signaling
Xiyao YIN ; Xin LIU ; Hui GONG ; Zhiliang CHU
Journal of Gynecologic Oncology 2024;35(4):e97-
Objective:
Cervical cancer (CC) is a serious gynecologic health issue for women worldwide.Long non-coding RNA (lncRNA) has been well-documented in controlling malignant behavior of various cancer cells. The role of lncRNA STARD7-AS1 in regulating CC cell proliferation and autophagy and its possible mechanism were investigated in this work.
Methods:
RNA expression and protein levels were quantified by reverse transcription quantitative polymerase chain reaction and western blotting. The location of STARD7-AS1 in CC cells was examined using subcellular fraction assays. Cell Counting Kit-8 assays and colony forming assays were performed to measure CC cell viability and proliferation.Autophagy in CC cells was evaluated using macrophage-derived chemokine (MDC) staining and transmission electron microscopy. The binding between microRNA (miR)-31-5p and STARD7-AS1 (or thioredoxin-interacting protein [TXNIP]) was determined by performing luciferase reporter, RNA pull-down or RNA immunoprecipitation assays.
Results:
STARD7-AS1 overexpression significantly suppressed CC cell viability and proliferation while notably inducing autophagy. STARD7-AS1 upregulated TXNIP expression via interaction with miR-31-5p. In addition, the effects of STARD7-AS1 on CC cell proliferation and autophagy were reversed by TXNIP silencing. The suppressive effect of STARD7-AS1 overexpression on phosphorylated levels of mTOR and S6K1 was countervailed by TXNIP deficiency.
Conclusion
In conclusion, lncRNA STARD7-AS1 inhibits CC cell proliferation and promotes cell autophagy by targeting the miR-31-5p/TXNIP axis to inactivate the mTOR signaling.
2.LncRNA STARD7-AS1 suppresses cervical cancer cell proliferation while promoting autophagy by regulating miR-31-5p/TXNIP axis to inactivate the mTOR signaling
Xiyao YIN ; Xin LIU ; Hui GONG ; Zhiliang CHU
Journal of Gynecologic Oncology 2024;35(4):e97-
Objective:
Cervical cancer (CC) is a serious gynecologic health issue for women worldwide.Long non-coding RNA (lncRNA) has been well-documented in controlling malignant behavior of various cancer cells. The role of lncRNA STARD7-AS1 in regulating CC cell proliferation and autophagy and its possible mechanism were investigated in this work.
Methods:
RNA expression and protein levels were quantified by reverse transcription quantitative polymerase chain reaction and western blotting. The location of STARD7-AS1 in CC cells was examined using subcellular fraction assays. Cell Counting Kit-8 assays and colony forming assays were performed to measure CC cell viability and proliferation.Autophagy in CC cells was evaluated using macrophage-derived chemokine (MDC) staining and transmission electron microscopy. The binding between microRNA (miR)-31-5p and STARD7-AS1 (or thioredoxin-interacting protein [TXNIP]) was determined by performing luciferase reporter, RNA pull-down or RNA immunoprecipitation assays.
Results:
STARD7-AS1 overexpression significantly suppressed CC cell viability and proliferation while notably inducing autophagy. STARD7-AS1 upregulated TXNIP expression via interaction with miR-31-5p. In addition, the effects of STARD7-AS1 on CC cell proliferation and autophagy were reversed by TXNIP silencing. The suppressive effect of STARD7-AS1 overexpression on phosphorylated levels of mTOR and S6K1 was countervailed by TXNIP deficiency.
Conclusion
In conclusion, lncRNA STARD7-AS1 inhibits CC cell proliferation and promotes cell autophagy by targeting the miR-31-5p/TXNIP axis to inactivate the mTOR signaling.
3.LncRNA STARD7-AS1 suppresses cervical cancer cell proliferation while promoting autophagy by regulating miR-31-5p/TXNIP axis to inactivate the mTOR signaling
Xiyao YIN ; Xin LIU ; Hui GONG ; Zhiliang CHU
Journal of Gynecologic Oncology 2024;35(4):e97-
Objective:
Cervical cancer (CC) is a serious gynecologic health issue for women worldwide.Long non-coding RNA (lncRNA) has been well-documented in controlling malignant behavior of various cancer cells. The role of lncRNA STARD7-AS1 in regulating CC cell proliferation and autophagy and its possible mechanism were investigated in this work.
Methods:
RNA expression and protein levels were quantified by reverse transcription quantitative polymerase chain reaction and western blotting. The location of STARD7-AS1 in CC cells was examined using subcellular fraction assays. Cell Counting Kit-8 assays and colony forming assays were performed to measure CC cell viability and proliferation.Autophagy in CC cells was evaluated using macrophage-derived chemokine (MDC) staining and transmission electron microscopy. The binding between microRNA (miR)-31-5p and STARD7-AS1 (or thioredoxin-interacting protein [TXNIP]) was determined by performing luciferase reporter, RNA pull-down or RNA immunoprecipitation assays.
Results:
STARD7-AS1 overexpression significantly suppressed CC cell viability and proliferation while notably inducing autophagy. STARD7-AS1 upregulated TXNIP expression via interaction with miR-31-5p. In addition, the effects of STARD7-AS1 on CC cell proliferation and autophagy were reversed by TXNIP silencing. The suppressive effect of STARD7-AS1 overexpression on phosphorylated levels of mTOR and S6K1 was countervailed by TXNIP deficiency.
Conclusion
In conclusion, lncRNA STARD7-AS1 inhibits CC cell proliferation and promotes cell autophagy by targeting the miR-31-5p/TXNIP axis to inactivate the mTOR signaling.
4.Assessment of left ventricular systolic function in young strength athletes by three-dimensional speckle tracking echocardiography
Shaohua HUA ; Lijin LI ; Xiyao SUN ; Jing YIN ; Mengjiao SUN ; Suyun HOU ; Yu YANG ; Songyan LIU
Chinese Journal of Ultrasonography 2017;26(8):657-660
Objective To assess the left ventricular systolic function in young strength male athletes by three-dimensional speckle tracking echocardiography (3D-STE).Methods A total of 45 young strength male athletes (athlete group) and 30 healthy young men (control group)were enrolled.Traditional echocardiography combined with 3D-STE were applied for all the subjects to obtain heart rate (HR),left ventricular end-diastolic diameter (LVEDD),the thickness of interventricular septum (IVS) and posterior wall thickness (PWT),relative wall thickness (RWT),left ventricular end-diastolic volume (EDV),endsystolic volume (ESV),left ventricular ejection fraction(LVEF),stroke volume (SV),left ventricular mass (LVM),left ventricular global longitudinal strain (GLS),global circumferential strain (GCS),global area strain (GAS),global radial strain (GRS).Results There were a significant increase inLVEDD,IVS,PWT,RWT,EDV,ESV,SV,LVM and significant decrease in HR,GLS,GCS,GAS and GRS in athlete group compared with the control group (P < 0.05).However,there was no significant difference in LVEF between two groups (P >0.05).Conclusions There are subclinical changes of left ventricular systolic functionin of young strength male athletes.3D-STE can accurately assess the changes,and provide reliable information for clinical assessment of athletes' heart function.