<p>Structural maintenance of chromosome (SMC) complexes are central regulators of chromosome architecture that are essential in all domains of life. For decades, the structural biology field has been debating how these conserved protein complexes use their intricate ring-like structures to structurally organize DNA. Here, we review the contributions of single-molecule biophysical approaches to resolving the molecular mechanism of SMC protein function.</p
Structural maintenance of chromosomes (SMC) complexes are key organizers of chromosome architecture ...
Cohesin and condensin complexes are essential for defining the topology of chromosomes through the c...
SMC condensin complexes are central modulators of chromosome superstructure in all branches of life....
Structural maintenance of chromosome (SMC) complexes are central regulators of chromosome architectu...
Every cell deals with the challenge of organising its DNA. First, the DNA needs to be compacted in s...
Structural maintenance of chromosomes (SMC) proteins are ubiquitous in organisms from bacteria to hu...
Genome maintenance requires various nucleoid‐associated factors in prokaryotes. Among them, the SMC ...
Chromosome cohesion and condensation are essential prerequisites of proper segregation of genomes du...
Structural maintenance of chromosomes (SMC) proteins are chromosomal ATPases, highly conserved from ...
AbstractThe mechanism by which eukaryotic chromosomes condense as cells enter mitosis has long been ...
The structural maintenance of chromosome (SMC) proteins are required for a number of essential nucle...
SMC proteins organize chromosomes to coordinate essential nuclear processes such as gene expression ...
organization; chromosome segregation. Structural Maintenance of Chromosomes (SMC) protein complexes ...
All living cells have to master the extraordinarily extended and tangly nature of genomic DNA molecu...
The structural maintenance of chromosome (SMC) family of proteins represents an expanding group of c...
Structural maintenance of chromosomes (SMC) complexes are key organizers of chromosome architecture ...
Cohesin and condensin complexes are essential for defining the topology of chromosomes through the c...
SMC condensin complexes are central modulators of chromosome superstructure in all branches of life....
Structural maintenance of chromosome (SMC) complexes are central regulators of chromosome architectu...
Every cell deals with the challenge of organising its DNA. First, the DNA needs to be compacted in s...
Structural maintenance of chromosomes (SMC) proteins are ubiquitous in organisms from bacteria to hu...
Genome maintenance requires various nucleoid‐associated factors in prokaryotes. Among them, the SMC ...
Chromosome cohesion and condensation are essential prerequisites of proper segregation of genomes du...
Structural maintenance of chromosomes (SMC) proteins are chromosomal ATPases, highly conserved from ...
AbstractThe mechanism by which eukaryotic chromosomes condense as cells enter mitosis has long been ...
The structural maintenance of chromosome (SMC) proteins are required for a number of essential nucle...
SMC proteins organize chromosomes to coordinate essential nuclear processes such as gene expression ...
organization; chromosome segregation. Structural Maintenance of Chromosomes (SMC) protein complexes ...
All living cells have to master the extraordinarily extended and tangly nature of genomic DNA molecu...
The structural maintenance of chromosome (SMC) family of proteins represents an expanding group of c...
Structural maintenance of chromosomes (SMC) complexes are key organizers of chromosome architecture ...
Cohesin and condensin complexes are essential for defining the topology of chromosomes through the c...
SMC condensin complexes are central modulators of chromosome superstructure in all branches of life....