
pmid: 16574476
Smads mediate signal transduction by cytokines of the transforming growth factor-beta family. Recent data show that intrinsic and extrinsic proteins of the inner nuclear membrane affect the activities of Smads. MAN1, an integral protein of the inner nuclear membrane, binds to receptor-regulated Smads and antagonizes signaling by transforming growth factor-beta, activin and bone morphogenic protein. Lamins A and C, extrinsic intermediate filament proteins of the inner nuclear membrane that are mutated in several human diseases, appear to regulate phosphorylation of Smads. These data demonstrate that proteins within and associated with the inner nuclear membrane lipid bilayer regulate signal transduction pathways involved in numerous developmental, physiological and pathophysiological processes.
Cell Nucleus, Nuclear Envelope, Animals, Humans, Nuclear Proteins, Smad Proteins, Cell Physiological Phenomena, Feedback, Signal Transduction
Cell Nucleus, Nuclear Envelope, Animals, Humans, Nuclear Proteins, Smad Proteins, Cell Physiological Phenomena, Feedback, Signal Transduction
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