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30 results on '"Wang, Zhi-Yong"'

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1. SP1-mediated upregulation of lncRNA SNHG4 functions as a ceRNA for miR-377 to facilitate prostate cancer progression through regulation of ZIC5.

2. GmBZL3 acts as a major BR signaling regulator through crosstalk with multiple pathways in Glycine max.

3. TOC1-PIF4 interaction mediates the circadian gating of thermoresponsive growth in Arabidopsis.

4. The Arabidopsis B-box protein BZS1/BBX20 interacts with HY5 and mediates strigolactone regulation of photomorphogenesis.

5. TOR Signaling Promotes Accumulation of BZR1 to Balance Growth with Carbon Availability in Arabidopsis.

6. Concerted genomic targeting of H3K27 demethylase REF6 and chromatin-remodeling ATPase BRM in Arabidopsis.

7. ANAC005 is a membrane-associated transcription factor and regulates vascular development in Arabidopsis.

8. Rice ASR1 and ASR5 are complementary transcription factors regulating aluminium responsive genes.

9. Cell elongation is regulated through a central circuit of interacting transcription factors in the Arabidopsis hypocotyl.

10. At the intersection of plant growth and immunity.

11. Brassinosteroid signalling.

12. Interactions between HLH and bHLH factors modulate light-regulated plant development.

13. BZS1, a B-box protein, promotes photomorphogenesis downstream of both brassinosteroid and light signaling pathways.

14. Brassinosteroid signal transduction from receptor kinases to transcription factors.

15. [Expression of DNA excision repair enzymes and lung cancer prognosis].

16. [Study on the expression of DNA excision repair biomarkers in cispatin-treated lung cancer cell line].

17. Circadian rhythms confer a higher level of fitness to Arabidopsis plants.

20. IL-6 Inhibition Reduces STAT3 Activation and Enhances the Antitumor Effect of Carboplatin.

21. bHLH Transcription Factor HBI1 Mediates the Trade-Off between Growth and Pathogen-Associated Molecular Pattern–Triggered Immunity in Arabidopsis.

22. Multisite Light-Induced Phosphorylation of the Transcription Factor PIF3 Is Necessary for Both Its Rapid Degradation and Concomitant Negative Feedback Modulation of Photoreceptor phyB Levels in Arabidopsis.

23. Interaction between BZR1 and PIF4 integrates brassinosteroid and environmental responses.

24. Multiple mechanisms modulate brassinosteroid signaling

25. The BAS chromatin remodeler determines brassinosteroid-induced transcriptional activation and plant growth in Arabidopsis.

26. Proteomics shed light on the brassinosteroid signaling mechanisms

27. The CDG1 Kinase Mediates Brassinosteroid Signal Transduction from BRI1 Receptor Kinase to BSU1 Phosphatase and GSK3-like Kinase BIN2

28. Integration of Light- and Brassinosteroid-Signaling Pathways by a GATA Transcription Factor in Arabidopsis

29. Integration of Brassinosteroid Signal Transduction with the Transcription Network for Plant Growth Regulation in Arabidopsis

30. An Essential Role for 14-3-3 Proteins in Brassinosteroid Signal Transduction in Arabidopsis

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