Article ID Journal Published Year Pages File Type
2178825 European Journal of Cell Biology 2008 12 Pages PDF
Abstract

Proteins of the nuclear envelope have been implicated as participating in gene silencing. BAF, a DNA- and LEM domain-binding protein, has been suggested to link chromatin to the nuclear envelope. We have previously shown that LAP2β, a LEM-domain inner nuclear membrane protein, represses transcription through binding to HDAC3 and induction of histone H4 deacetylation. We now show that LAP2ζ, the smallest LAP2 family member, is also involved in regulation of transcription. We show that similar to other LEM-domain proteins LAP2ζ interacts with BAF. LAP2ζ-YFP and BAF co-localize in the cytoplasm, and overexpression of LAP2ζ leads to reduction of nucleoplasmic BAF. Mutations in the LAP2ζ-YFP LEM domain decrease its interaction with BAF retaining the nucleo-cytoplasmic distribution of BAF. Co-expression of LAP2β and LAP2ζ results in inhibition of LAP2β-induced gene silencing while overexpression of LAP2ζ alone leads to a small increase in transcriptional activity of various transcription factors. Our results suggest that LAP2ζ is a transcriptional regulator acting predominantly to inhibit LAP2β-mediated repression. LAP2ζ may function by decreasing availability of BAF. These findings could have implications in the study of nuclear lamina-associated diseases and BAF-dependent retroviral integration.

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