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杜星
Associate Professor
Supervisor of Master's Candidates
School/Department: College of Animal Science & Technology
Education Level:With Certificate of Graduation for Doctorate Study
Degree:Doctoral degree
Professional Title:
Associate Professor
Alma Mater:
南京农业大学
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李新宇,杜星,姚望,潘增祥,李齐发.TGF-beta/SMAD4 signaling pathway activates the HAS2-HA system to regulate granulosa cell state,JOURNAL OF CELLULAR PHYSIOLOGY,2019,:-(Participating authors)
杨柳,杜星,刘禄,曹秋瑜,潘增祥,李齐发.miR-1306 Mediates the Feedback Regulation of the TGF-/SMAD Signaling Pathway in Granulosa Cells,CELLS,2019,8(4):-(Participating authors)
杜星,郭晶,曹秋瑜,姚望,李齐发.A haplotype variant of Hu sheep follicle-stimulating hormone receptor promoter region decreases transcriptional activity,ANIMAL GENETICS,2019,50(4):407-411(First Author)
李琦琦,杜星,刘禄,潘增祥,曹少先,李齐发.MiR-126* is a novel functional target of transcription factor SMAD4 in ovarian granulosa cells,GENE,2019,711:-(Participating authors)
安外尔·热合曼,杜星,姚一龙,依明,决肯阿尼瓦,李齐发.Smad4 Feedback Enhances BMPR1B Transcription in Ovine Granulosa Cells,INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES,2019,20(11):-(Participating authors)
杜星,李琦琦,曹秋瑜,王思琪,刘红林,李齐发.Integrated Analysis of miRNA-mRNA Interaction Network in Porcine Granulosa Cells Undergoing Oxidative Stress,OXIDATIVE MEDICINE AND CELLULAR LONGEVITY,2019,2019:-(First Author)
郭天亚,张金璧,姚望,杜星,李琦琦,黄龙,马梦楠,李齐发,刘红林,潘增祥.CircINHA resists granulosa cell apoptosis by upregulating CTGF as a ceRNA of miR-10a-5p in pig ovarian follicles,BIOCHIMICA ET BIOPHYSICA ACTA-GENE REGULATORY MECHANISMS,2019,1862(10):-(Participating authors)
王德迪,杜星,李隐侠,李齐发.A polymorphism in the transcriptional regulatory region strongly influences ovine FSHR mRNA decay,REPRODUCTION IN DOMESTIC ANIMALS,2019,54(1):83-90(Participating authors)
The transcription factor SMAD4 and miR-10b contribute to E2 release and cell apoptosis in ovarian granulosa cells by targeting CYP19A1,MOLECULAR AND CELLULAR ENDOCRINOLOGY,2018,476(0):84-95(Participating authors)
姚望,潘增祥,杜星,张金璧,李齐发.miR-181b-induced SMAD7 downregulation controls granulosa cell apoptosis through TGF-beta signaling by interacting with the TGFBR1 promoter,JOURNAL OF CELLULAR PHYSIOLOGY,2018,233(9):6807-6821(Participating authors)
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