Adhesion, but not a specific cadherin code, is indispensable for ES cell and induced pluripotency

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FLASH/casp8ap2 Is Indispensable for Early Embryogenesis but Dispensable for Proliferation and Differentiation of ES Cells

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The cell adhesion molecule M-cadherin is not essential for muscle development and regeneration.

M-cadherin is a classical calcium-dependent cell adhesion molecule that is highly expressed in developing skeletal muscle, satellite cells, and cerebellum. Based on its expression pattern and observations in cell culture, it has been postulated that M-cadherin may be important for the fusion of myoblasts to form myotubes, the correct localization and function of satellite cells during muscle re...

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The cell adhesion molecule M-cadherin is specifically expressed in developing and regenerating, but not denervated skeletal muscle.

The spatiotemporal distribution of M-cadherin mRNA has been determined by in situ hybridization in the mouse embryo and in adult skeletal muscle following experimental regeneration and denervation. M-cadherin mRNA is highly tissue specific and is found only in developing skeletal muscle. In contrast, N-cadherin mRNA has a broader tissue distribution in the embryo, being found on both neural ele...

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Adhesion is prerequisite, but alone insufficient, to elicit stem cell pluripotency.

Primitive mammalian neural stem cells (NSCs), arising during the earliest stages of embryogenesis, possess pluripotency in embryo chimera assays in contrast to definitive NSCs found in the adult. We hypothesized that adhesive differences determine the association of stem cells with embryonic cells in chimera assays and hence their ability to contribute to later tissues. We show that primitive N...

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ژورنال

عنوان ژورنال: Stem Cell Research

سال: 2013

ISSN: 1873-5061

DOI: 10.1016/j.scr.2013.08.009