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Ganji, M. (author), Shaltiel, Indra A. (author), Bisht, Shveta (author), Kim, E. (author), Kalichava, A. (author), Haering, Christian H. (author), Dekker, C. (author)
It has been hypothesized that SMC protein complexes such as condensin and cohesin spatially organize chromosomes by extruding DNA into large loops. We directly visualized the formation and processive extension of DNA loops by yeast condensin in real time. Our findings constitute unambiguous evidence for loop extrusion. We observed that a...
journal article 2018
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Terakawa, Tsuyoshi (author), Bisht, Shveta (author), Eeftens, J.M. (author), Dekker, C. (author), Haering, Christian H. (author), Greene, Eric C. (author)
Condensin plays crucial roles in chromosome organization and compaction, but the mechanistic basis for its functions remains obscure. We used single-molecule imaging to demonstrate that Saccharomyces cerevisiae condensin is a molecular motor capable of adenosine triphosphate hydrolysis–dependent translocation along double-stranded DNA....
journal article 2017
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Eeftens, J.M. (author), Bisht, Shveta (author), Kerssemakers, J.W.J. (author), Kschonsak, Marc (author), Haering, Christian H. (author), Dekker, C. (author)
Condensin, a conserved member of the SMC protein family of ring-shaped multi-subunit protein complexes, is essential for structuring and compacting chromosomes. Despite its key role, its molecular mechanism has remained largely unknown. Here, we employ single-molecule magnetic tweezers to measure, in real time, the compaction of individual...
journal article 2017