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1. Cell diversity and plasticity during atrioventricular heart valve EMTs

2. Breaking constraint of mammalian axial formulae

3. A Hox Code Defines Spinocerebellar Neuron Subtype Regionalization

4. Hippo Signaling Influences HNF4A and FOXA2 Enhancer Switching during Hepatocyte Differentiation

5. Breaking constraint of mammalian axial formulae

6. MicroRNA governs bistable cell differentiation and lineage segregation via a noncanonical feedback

7. A Hox code defines spinocerebellar neuron subtype regionalisation

8. Deep conservation of the enhancer regulatory code in animals

9. A Hox Code Defines Spinocerebellar Neuron Subtype Regionalization

10. Hippo Signaling Influences HNF4A and FOXA2 Enhancer Switching during Hepatocyte Differentiation

11. Co-ordinating Notch, BMP, and TGF-β signaling during heart valve development

12. Identification of a Transcription Factor, BHLHB8, Involved in Mouse Seminal Vesicle Epithelium Differentiation and Function1

13. SOX9 modulates the expression of key transcription factors required for heart valve development

14. Revealing the Hox code in developing spinocerebellar neurons

15. Huntingtin interacting proteins 14 and 14-like are required for chorioallantoic fusion during early placental development

16. A Notch-dependent transcriptional hierarchy promotes mesenchymal transdifferentiation in the cardiac cushion

17. Notch initiates the endothelial-to-mesenchymal transition in the atrioventricular canal through autocrine activation of soluble guanylyl cyclase

18. MIST1 regulates the pancreatic acinar cell expression of Atp2c2, the gene encoding secretory pathway calcium ATPase 2

19. Identification of a transcription factor, BHLHB8, involved in mouse seminal vesicle epithelium differentiation and function

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