Condensin, a key component of the structure maintenance of chromosome (SMC) protein complexes, has recently been shown to be a motor that extrudes loops of DNA1. It remains unclear, however, how condensin complexes work together to collectively package DNA into chromosomes. Here we use time-lapse single-molecule visualization to study mutual interactions between two DNA-loop-extruding yeast condensins. We find that these motor proteins, which, individually, extrude DNA in one direction only are able to dynamically change each other’s DNA loop sizes, even when far apart. When they are in close proximity, condensin complexes are able to traverse each other and form a loop structure, which we term a Z-loop—three double-stranded DNA helices ali...
Condensin is a conserved SMC complex that uses its ATPase machinery to structure genomes, but how it...
Condensin complexes have central roles in the three-dimensional organization of chromosomes during c...
Cells possess remarkable control of the folding and entanglement topology of long and flexible chrom...
Condensin, a key component of the structure maintenance of chromosome (SMC) protein complexes, has r...
It has been hypothesized that SMC protein complexes such as condensin and cohesin spatially organize...
Condensin, a structural maintenance of chromosomes (SMC) complex, has been shown to be a molecular m...
The condensin SMC protein complex organizes chromosomal structure by extruding loops of DNA. Its ATP...
During cell division, the genetic material of each cell, the DNA undergoes the most drastic rearran...
Ring-shaped structural maintenance of chromosomes (SMC) complexes like condensin and cohesin extrude...
© Banigan and Mirny. Chromosome compaction is essential for reliable transmission of genetic informa...
Complexes containing a pair of structural maintenance of chromosomes (SMC) family proteins are funda...
Condensin, a conserved member of the SMC protein family of ring-shaped multi-subunit protein complex...
Condensin plays crucial roles in chromosome organization and compaction, but the mechanistic basis f...
Structural maintenance of chromosomes (SMC) complexes are essential for genome organization from bac...
To separate replicated sister chromatids during mitosis, eukaryotes and prokaryotes have structural ...
Condensin is a conserved SMC complex that uses its ATPase machinery to structure genomes, but how it...
Condensin complexes have central roles in the three-dimensional organization of chromosomes during c...
Cells possess remarkable control of the folding and entanglement topology of long and flexible chrom...
Condensin, a key component of the structure maintenance of chromosome (SMC) protein complexes, has r...
It has been hypothesized that SMC protein complexes such as condensin and cohesin spatially organize...
Condensin, a structural maintenance of chromosomes (SMC) complex, has been shown to be a molecular m...
The condensin SMC protein complex organizes chromosomal structure by extruding loops of DNA. Its ATP...
During cell division, the genetic material of each cell, the DNA undergoes the most drastic rearran...
Ring-shaped structural maintenance of chromosomes (SMC) complexes like condensin and cohesin extrude...
© Banigan and Mirny. Chromosome compaction is essential for reliable transmission of genetic informa...
Complexes containing a pair of structural maintenance of chromosomes (SMC) family proteins are funda...
Condensin, a conserved member of the SMC protein family of ring-shaped multi-subunit protein complex...
Condensin plays crucial roles in chromosome organization and compaction, but the mechanistic basis f...
Structural maintenance of chromosomes (SMC) complexes are essential for genome organization from bac...
To separate replicated sister chromatids during mitosis, eukaryotes and prokaryotes have structural ...
Condensin is a conserved SMC complex that uses its ATPase machinery to structure genomes, but how it...
Condensin complexes have central roles in the three-dimensional organization of chromosomes during c...
Cells possess remarkable control of the folding and entanglement topology of long and flexible chrom...