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Your search keyword '"Weiyuan Ye"' showing total 20 results

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1. Low-concentration iron promotes Klebsiella pneumoniae biofilm formation by suppressing succinic acid

2. Computational Characterization of Osteoporosis Associated SNPs and Genes Identified by Genome-Wide Association Studies.

3. Low-concentration Iron Promotes Klebsiella Pneumoniae Biofilm Formation by Suppressing Succinic Acid

4. LncRNA ZBTB40-IT1 modulated by osteoporosis GWAS risk SNPs suppresses osteogenesis

6. USF3 modulates osteoporosis risk by targeting WNT16, RANKL, RUNX2, and two GWAS lead SNPs rs2908007 and rs4531631

7. Expression pattern and functional analysis of fundc1 in rare minnow ( Gobiocypris rarus )

8. Osteoporosis genome-wide association study variant c.3781 CA is regulated by a novel anti-osteogenic factor miR-345-5p

9. Structural and Functional Characterization of the Proteins Responsible for N6-Methyladenosine Modification and Recognition

10. Expression of the alternative splicing variants of bcl6b in medaka Oryzias latipes

11. Anticancer drugs induce hypomethylation of the acetylcholinesterase promoter via a phosphorylated-p38-DNMT1-AChE pathway in apoptotic hepatocellular carcinoma cells

12. A natural antisense transcript regulates acetylcholinesterase gene expression via epigenetic modification in Hepatocellular Carcinoma

13. Acetylcholinesterase deficiency decreases apoptosis in dopaminergic neurons in the neurotoxin model of Parkinson's disease

14. Computational Characterization of Osteoporosis Associated SNPs and Genes Identified by Genome-Wide Association Studies

15. Induction of a 55 kDa acetylcholinesterase protein during apoptosis and its negative regulation by the Akt pathway

16. RanBPM is an acetylcholinesterase-interacting protein that translocates into the nucleus during apoptosis

17. Structural and functional characterization of the proteins responsible for N6-methyladenosine modification and recognition

18. Hsa-miR-132 regulates apoptosis in non-small cell lung cancer independent of acetylcholinesterase

19. AChE deficiency or inhibition decreases apoptosis and p53 expression and protects renal function after ischemia/reperfusion

20. A monoclonal antibody against synaptic AChE: a useful tool for detecting apoptotic cells

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