The organization of interphase nuclei has numerous consequences for gene expression and genome stability in eukaryotes. Here, we present studies of chromosome organization in Drosophila melanogaster over the course of the cell cycle. We report surprising observations suggesting that cohesin, a protein complex essential in mitosis for holding together the products of DNA replication known as sister chromatids, may not be required to keep sister chromatids in close proximity during interphase. These observations raise questions regarding the nature of cohesin-independent connections between chromatids, why the cell might have such connections in addition to those mediated by cohesin proteins, and how cohesin-independent mechanisms might contr...
Sister chromatid cohesion in eukaryotes is maintained mainly by a conserved multiprotein complex ter...
Pericentric heterochromatin, while often considered as "junk" DNA, plays important functions in chro...
Plants possess the structural maintenance of chromosome (SMC) protein complexes cohesin, condensin, ...
Following DNA replication, sister chromatids must stay connected for the remainder of the cell cycle...
<div><p>The eukaryotic nucleus is both spatially and functionally partitioned. This organization con...
Summary: Interaction domains in Drosophila chromosomes form by segregation of active and inactive ch...
The eukaryotic nucleus is both spatially and functionally partitioned. This organization contributes...
‘Cohesin’ is a highly conserved multiprotein complex thought to be the primary effector of sister-ch...
<div><p>Metazoan chromosomes are folded into discrete sub-nuclear domains, referred to as chromosome...
Metazoan chromosomes are folded into discrete sub-nuclear domains, referred to as chromosome territo...
Abstract‘Cohesin’ is a highly conserved multiprotein complex thought to be the primary effector of s...
Maintenance of an intact genome and proper regulation of the genes within are crucial aspects for li...
<p>Hypothetical cohesin-independent connections that form between chromosomes and the timing of thei...
<div><p>Pericentric heterochromatin, while often considered as “junk” DNA, plays important functions...
Condensin and cohesin complexes act in diverse nuclear processes in addition to their widely known r...
Sister chromatid cohesion in eukaryotes is maintained mainly by a conserved multiprotein complex ter...
Pericentric heterochromatin, while often considered as "junk" DNA, plays important functions in chro...
Plants possess the structural maintenance of chromosome (SMC) protein complexes cohesin, condensin, ...
Following DNA replication, sister chromatids must stay connected for the remainder of the cell cycle...
<div><p>The eukaryotic nucleus is both spatially and functionally partitioned. This organization con...
Summary: Interaction domains in Drosophila chromosomes form by segregation of active and inactive ch...
The eukaryotic nucleus is both spatially and functionally partitioned. This organization contributes...
‘Cohesin’ is a highly conserved multiprotein complex thought to be the primary effector of sister-ch...
<div><p>Metazoan chromosomes are folded into discrete sub-nuclear domains, referred to as chromosome...
Metazoan chromosomes are folded into discrete sub-nuclear domains, referred to as chromosome territo...
Abstract‘Cohesin’ is a highly conserved multiprotein complex thought to be the primary effector of s...
Maintenance of an intact genome and proper regulation of the genes within are crucial aspects for li...
<p>Hypothetical cohesin-independent connections that form between chromosomes and the timing of thei...
<div><p>Pericentric heterochromatin, while often considered as “junk” DNA, plays important functions...
Condensin and cohesin complexes act in diverse nuclear processes in addition to their widely known r...
Sister chromatid cohesion in eukaryotes is maintained mainly by a conserved multiprotein complex ter...
Pericentric heterochromatin, while often considered as "junk" DNA, plays important functions in chro...
Plants possess the structural maintenance of chromosome (SMC) protein complexes cohesin, condensin, ...