Remodeling of perturbed chromatin can initiate de novo transcriptional and post-transcriptional silencing.

Carlier, Florian; Castro Ramirez, Sebastian; Kilani, Jaafar; Chehboub, Sara; Loïodice, Isabelle; Taddei, Angela; Gladyshev, Eugene · Proc Natl Acad Sci U S A · 2024

basic_science · Level V

Where this comes from

Abstract

In eukaryotes, repetitive DNA can become silenced de novo, either transcriptionally or post-transcriptionally, by processes independent of strong sequence-specific cues. The mechanistic nature of such processes remains poorly understood. We found that in the fungus <i>Neurospora crassa</i>, de novo initiation of both transcriptional and post-transcriptional silencing was linked to perturbed chromatin, which was produced experimentally by the aberrant activity of transcription factors at the <i>tetO</i> operator array. Transcriptional silencing was mediated by canonical constitutive heterochromatin. On the other hand, post-transcriptional silencing resembled repeat-induced quelling but occurred normally when homologous recombination was inactivated. All silencing of the <i>tetO</i> array was dependent on SAD-6, fungal ortholog of the SWI/SNF chromatin remodeler ATRX (Alpha Thalassemia/Mental Retardation Syndrome X-Linked), which was required to maintain nucleosome occupancy at the perturbed locus. In addition, we found that two other types of sequences (the <i>lacO</i> array and native AT-rich DNA) could also undergo recombination-independent quelling associated with perturbed chromatin. These results suggested a model in which the de novo initiation of transcriptional and post-transcriptional silencing is coupled to the remodeling of perturbed chromatin.

Medical subject headings