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Folding of cohesin's coiled coil is important for Scc2/4-induced association with chromosomes

Elife. 2021-07; 
Naomi J Petela, Andres Gonzalez Llamazares, Sarah Dixon, Bin Hu, Byung-Gil Lee, Jean Metson, Heekyo Seo, Antonio Ferrer-Harding, Menelaos Voulgaris, Thomas Gligoris, James Collier, Byung-Ha Oh, Jan Löwe, Kim A Nasmyth
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Catalog Antibody The following antibodies were used: anti-V5 (Bio-Rad), anti-HA (Roche), His-tag antibody (GenScript) Get A Quote

摘要

Cohesin's association with and translocation along chromosomal DNAs depend on an ATP hydrolysis cycle driving the association and subsequent release of DNA. This involves DNA being 'clamped' by Scc2 and ATP-dependent engagement of cohesin's Smc1 and Smc3 head domains. Scc2's replacement by Pds5 abrogates cohesin's ATPase and has an important role in halting DNA loop extrusion. The ATPase domains of all SMC proteins are separated from their hinge dimerisation domains by 50-nm-long coiled coils, which have been observed to zip up along their entire length and fold around an elbow, thereby greatly shortening the distance between hinges and ATPase heads. Whether folding exists in vivo or has any physiological impor... More

关键词

S. cerevisiae, chromosomes, cryo-em, folding, gene expression, molecular biophysics, sister chromatid cohesion, structural biology