Search bioRxiv⌕ Search

Biology subjects

Hoefler, A.

Publications and source records attributed to Hoefler, A..

2 recordsLinked to original sources

Transgenerational maintenance of H3K27me3 heterochromatin is balanced by chromodomain proteins in Caenorhabditis elegans

The ability to replicate and pass information to descendants is a fundamental requirement for life. In addition to the DNA-based genetic information, modifications of the DNA or DNA-associated proteins can create patterns of heritable gene regulation. Such epigenetic inheritance allows for adaptation without mutation, but its limits and regulation are incompletely understood. Here we developed a C. elegans system to study the transgenerational epigenetic inheritance of H3K27me3, a conserved histone posttranslational modification associated with gene repression. We find that induced alterations of the genome-wide H3K27me3 landscape and the associated fertility defects persist for many generations in genetically wildtype descendants under selective pressure. We uncover that the inheritance of the altered H3K27me3 landscape is regulated by two chromodomain proteins with antagonizing functions, and provide mechanistic insight into how this molecular memory is initiated and maintained. Our results demonstrate that epigenetic inheritance can act as a mutation-independent, heritable mechanism of adaptation. In BriefOzdemir et al. demonstrate that an altered genomic distribution of the histone modification H3K27me3 can be epigenetically inherited across many generations through the activity of HERI-1/SET-32/MES-4, which is antagonized by CEC-6/PRC2 in C. elegans. HighlightsO_LIAltered H3K27me3 landscapes can be inherited for at least 15 generations in C. elegans. C_LIO_LIThe chromodomain proteins CEC-6 and HERI-1 have opposite roles in antagonizing or promoting the maintenance of the altered H3K27me3 landscape. C_LIO_LIH3K23me3 and H3K36me3 replace H3K27me3 to promote the intergenerational and transgenerational inheritance of the altered epigenome. C_LI

genetics↗

New structural features of the APC/C revealed by high resolution cryo-EM structures of apo-APC/C and the APC/C CDH1:EMI1 complex

The multi-subunit anaphase-promoting complex/cyclosome (APC/C) is a master regulator of cell division. It controls progression through the cell cycle by timely marking mitotic cyclins and other cell cycle regulatory proteins for degradation. The APC/C itself is regulated by the sequential action of its coactivator subunits CDC20 and CDH1, post-translational modifications, and its inhibitory binding partners EMI1 and the mitotic checkpoint complex (MCC). In this study, we took advantage of the latest developments in cryo-electron microscopy (cryo-EM) to determine the structures of human APC/CCDH1:EMI1 and apo-APC/C at 2.9 [A] and 3.2 [A] resolution, respectively, providing novel insights into the regulation of APC/C activity. The high-resolution maps allowed the unambiguous assignment of a previously unassigned -helix to the N-terminus of CDH1 (CDH11) in the APC/CCDH1:EMI1 ternary complex. We also identified a novel zinc-binding module in APC2 that confers structural stability to APC2, and we confirmed the presence of zinc ions experimentally. Finally, due to the higher resolution and well defined density of these maps, we were able to build, aided by AlphaFold predictions, several intrinsically disordered regions in different APC/C subunits that likely play a role in proper APC/C assembly and regulation of its activity.

cell biology↗