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PICH:A DNA Translocase Specially Adapted for Processing Anaphase Bridge DNA

Authors :
Biebricher, A.
Hirano, S.
Enzlin, J.
Wiechens, N.
Streicher, W.
Huttner, D.
Wang, L.H-C.
Nigg, E.
Owen-Hughes, T.
Liu, Y.
Peterman, E.
Wuite, G.
Hickson, I.
Biebricher, A.
Hirano, S.
Enzlin, J.
Wiechens, N.
Streicher, W.
Huttner, D.
Wang, L.H-C.
Nigg, E.
Owen-Hughes, T.
Liu, Y.
Peterman, E.
Wuite, G.
Hickson, I.
Source :
Biebricher , A , Hirano , S , Enzlin , J , Wiechens , N , Streicher , W , Huttner , D , Wang , LH-C , Nigg , E , Owen-Hughes , T , Liu , Y , Peterman , E , Wuite , G & Hickson , I 2013 , ' PICH : A DNA Translocase Specially Adapted for Processing Anaphase Bridge DNA ' , Molecular Cell , vol. 51 , no. 5 , pp. 691-701 .
Publication Year :
2013

Abstract

The Plk1-interacting checkpoint helicase (PICH) protein localizes to ultrafine anaphase bridges (UFBs) in mitosis alongside a complex of DNA repair proteins, including the Bloom's syndrome protein (BLM). However, very little is known about the function of PICH or how it is recruited to UFBs. Using a combination of microfluidics, fluorescence microscopy, and optical tweezers, we have defined the properties of PICH in an in vitro model of an anaphase bridge. We show that PICH binds with a remarkably high affinity to duplex DNA, resulting in ATP-dependent protein translocation and extension of the DNA. Most strikingly, the affinity of PICH for binding DNA increases with tension-induced DNA stretching, which mimics the effect of the mitotic spindle on a UFB. PICH binding also appears to diminish force-induced DNA melting. We propose a model in which PICH recognizes and stabilizes DNA under tension during anaphase, thereby facilitating the resolution of entangled sister chromatids.

Details

Database :
OAIster
Journal :
Biebricher , A , Hirano , S , Enzlin , J , Wiechens , N , Streicher , W , Huttner , D , Wang , LH-C , Nigg , E , Owen-Hughes , T , Liu , Y , Peterman , E , Wuite , G & Hickson , I 2013 , ' PICH : A DNA Translocase Specially Adapted for Processing Anaphase Bridge DNA ' , Molecular Cell , vol. 51 , no. 5 , pp. 691-701 .
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1322642393
Document Type :
Electronic Resource