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Netta Mendelson Cohen

Researcher at Weizmann Institute of Science

Publications -  14
Citations -  2944

Netta Mendelson Cohen is an academic researcher from Weizmann Institute of Science. The author has contributed to research in topics: Epigenomics & DNA methylation. The author has an hindex of 9, co-authored 11 publications receiving 2110 citations. Previous affiliations of Netta Mendelson Cohen include Israel Institute for Biological Research.

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Multiscale 3D Genome Rewiring during Mouse Neural Development

TL;DR: This work comprehensively mapped 3D chromatin organization during mouse neural differentiation in vitro and in vivo, generating the highest-resolution Hi-C maps available to date and shows that multiple factors influence the dynamics of chromatin interactions in development.
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Cell-cycle dynamics of chromosomal organization at single-cell resolution

TL;DR: It is shown that chromosomal compartments, topological-associated domains (TADs), contact insulation and long-range loops, all defined by bulk Hi-C maps, are governed by distinct cell-cycle dynamics, while loops are generally stable from G1 to S and G2 phase.
Journal ArticleDOI

Prediction of acute myeloid leukaemia risk in healthy individuals

Sagi Abelson, +90 more
- 09 Jul 2018 - 
TL;DR: Deep sequencing is used to analyse genes that are recurrently mutated in AML to distinguish between individuals who have a high risk of developing AML and those with benign ARCH, providing proof-of-concept that it is possible to discriminate ARCH from pre-AML many years before malignant transformation.
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Epigenetic polymorphism and the stochastic formation of differentially methylated regions in normal and cancerous tissues

TL;DR: It is shown that methylation patterns within populations of cells from individual somatic tissues are heterogeneous and polymorphic, and that changes in the susceptibility to methylation accumulation are correlated with changes in histone modification and CTCF occupancy.
Posted ContentDOI

Cell cycle dynamics of chromosomal organisation at single-cell resolution

TL;DR: It is shown that chromosomal compartments, topological domains, contact insulation and long-range loops, all defined by ensemble Hi-C maps, are governed by distinct cell cycle dynamics, while DNA replication correlates with build-up of compartments and reduction in TAD insulation, while loops are generally stable from G1 through S and G2.