IndraLab

Statements



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"In addition, CYLD modulates dendritic growth and postsynaptic differentiation in mouse hippocampal neurons [XREF_BIBR]."

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"The decreased JNK pathway activation in the H-CYLD WT cells appears as a plausible mechanism for CYLD induction of keratinocytes differentiation."

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"Furthermore, depletion of beta-TRCP induced CYLD accumulation and TRAF6 deubiquitination in osteoclast precursor cells, leading to suppression of RANKL induced osteoclast differentiation."

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"As a result, we have found that forced expression of wild-type CYLD (CYLD WT) both in HaCaT keratinocytes and in the skin equivalents enhances keratinocyte differentiation, while the inhibition of CYLD function by expression of a catalytically inactive form of CYLD impairs epidermal differentiation."

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"The diminished function of CYLD impairs the differentiation of keratinocytes in human HaCaT skin equivalents."

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"Our data demonstrate that alterations in CYLD expression in keratinocytes disrupt normal epidermal homeostasis : the forced expression of CYLD WT in human HaCaT keratinocytes and the skin equivalents enhance keratinocyte differentiation."

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"Increased CYLD expression enhances the differentiation of keratinocytes in human skin equivalents."

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"Importantly, we have discovered that CYLD WT also promotes the differentiation of A431 tumoral keratinocytes through inhibition of JNK activation."

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"We show that CYLD overexpression increases keratinocyte differentiation while CYLD loss of function impairs epidermal differentiation."

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"In addition to the skin appendages changes, the K5-CYLD C/S mice show epidermal alterations, mainly impaired keratinocyte differentiation, thus confirming in vivo the results that our group have previously described using a model of skin equivalents of human HaCaT keratinocytes [XREF_BIBR], in which we demonstrated that the overexpression of the wild-type CYLD (CYLD wt) promoted keratinocyte differentiation, whereas the expression of the mutant CYLD C/S prevented, through the activation of the JNK pathway, the epidermal differentiation [XREF_BIBR]."