SUV4-20H HISTONE METHYLTRANSFERASES PROMOTE NEUROECTODERMAL DIFFERENTIATION BY SILENCING THE PLURIPOTENCY-ASSOCIATED OCT-25 GENE.

Suv4-20h histone methyltransferases promote neuroectodermal differentiation by silencing the pluripotency-associated Oct-25 gene.

Post-translational modifications (PTMs) of histones exert fundamental roles in regulating gene expression.During steel-cockrings development, groups of PTMs are constrained by unknown mechanisms into combinatorial patterns, which facilitate transitions from uncommitted embryonic cells into differentiated somatic cell lineages.Repressive histone mod

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Whole-Brain Network Connectivity Underlying the Human Speech Articulation as Emerged Integrating Direct Electric Stimulation, Resting State fMRI and Tractography

Production of fluent speech in humans is based on a precise and coordinated articulation of sounds.A speech articulation network (SAN) has been observed in multiple brain studies typically using either neuroimaging or direct electrical stimulation (DES), thus giving limited knowledge about the whole brain structural and functional organization of t

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