Oncogenic c-Myc induces replication stress by increasing cohesins chromatin occupancy in a CTCF-dependent manner [PDF]
Oncogene-induced replication stress is a crucial driver of genomic instability and one of the key events contributing to the onset and evolution of cancer.
Cosetta Bertoli +2 more
exaly +3 more sources
Aberrant cohesin function in Saccharomyces cerevisiae activates Mcd1 degradation to promote cell lethality. [PDF]
The cohesin complex is composed of core ring proteins (Smc1, Smc3 and Mcd1) and associated factors (Pds5, Scc3, and Rad61) that bind via Mcd1. Extrusion (looping from within a single DNA molecule) and cohesion (the tethering together of two different DNA
Gurvir Singh, Robert V Skibbens
doaj +2 more sources
Insights into lignocellulose degradation: comparative genomics of anaerobic and cellulolytic Ruminiclostridium-type species [PDF]
Mesophilic, anaerobic, and cellulolytic Ruminiclostridium-type bacterial species can secrete an extracellular, multi-enzyme machinery cellulosome, which efficiently degrades cellulose.
Mengcheng You +9 more
doaj +2 more sources
During meiotic prophase, sister chromatids are organized into axial element (AE), which underlies the structural framework for the meiotic events such as meiotic recombination and homolog synapsis.
Kunihiro Ohta +2 more
exaly +2 more sources
Crosstalk between cohesins and axis proteins determines meiotic chromosome architecture in Sordaria macrospora. [PDF]
Faithful chromosome segregation during meiosis requires the coordinated action of cohesin complexes and chromosome axis proteins. How these factors interact and communicate along chromosome axes, especially during meiotic prophase I, remains however ...
Kenza Yefsah +6 more
doaj +2 more sources
Cohesin protein Smc3 influences kinocilial structure and function [PDF]
Fiona M. Mensching +2 more
doaj +2 more sources
Cohesin and condensin regulate chromosome topology and play an essential role in maintaining pluripotency in embryonic stem cells [PDF]
Cohesin and condensin, two related protein complexes, play essential roles in ensuring the accurate segregation of the genome into daughter cells during cell division. However, the interaction between cohesin and condensin in embryonic stem cells remains
Eui-Hwan Choi, Keun P. Kim
doaj +2 more sources
Spatial Chromatin Organization Across the Cell Cycle: Insights from Auxin-Inducible Protein Depletion [PDF]
Many cellular processes, including gene expression regulation, DNA replication and repair, as well as proper condensation and segregation of chromosomes, require highly coordinated remodeling of chromatin.
Artem Nurislamov, Anastasia Yunusova
doaj +2 more sources
Rules of engagement for condensins and cohesins guide mitotic chromosome formation [PDF]
Kumiko Samejima +2 more
exaly +3 more sources
CTCF, Cohesin, and Chromatin in Human Cancer [PDF]
It is becoming increasingly clear that eukaryotic genomes are subjected to higher-order chromatin organization by the CCCTC-binding factor/cohesin complex.
Sang-Hyun Song, Tae-You Kim
doaj +1 more source

