An edition of Keeping sisters together (2005)

Keeping sisters together

cohesin and Ycs4 define distinct mechanisms for sister chromatid cohesion.

  • 0 Ratings
  • 0 Want to read
  • 0 Currently reading
  • 0 Have read
Keeping sisters together
Wendy W. S. Lam
Not in Library

My Reading Lists:

Create a new list

Check-In

×Close
Add an optional check-in date. Check-in dates are used to track yearly reading goals.
Today

  • 0 Ratings
  • 0 Want to read
  • 0 Currently reading
  • 0 Have read

Buy this book

Last edited by WorkBot
January 24, 2010 | History
An edition of Keeping sisters together (2005)

Keeping sisters together

cohesin and Ycs4 define distinct mechanisms for sister chromatid cohesion.

  • 0 Ratings
  • 0 Want to read
  • 0 Currently reading
  • 0 Have read

The maintenance of genetic integrity during the eukaryotic cell cycle requires sister chromatid cohesion and chromosome condensation. I show that Ycs4p, a subunit of the condensin complex, has an important role in sister chromatid cohesion. My data suggest that Ycs4p functions in a distinct sister chromatid cohesion pathway from that mediated by the cohesin subunit Mcd1p. First, the two proteins localize independently on chromatin. Strikingly, and in contrast to cohesin mutants, a loss of Ycs4p-mediated cohesion can be efficiently re-established within mitosis following reactivation of the protein. Finally, Ycs4p appears specifically required for chromosomal arm cohesion but not at centromeric nor telomeric loci, whereas cohesins are needed throughout the chromosome length. Together these data demonstrate that Ycs4p is involved in a previously uncharacterized cohesin-independent mechanism for chromosome pairing in the budding yeast. This cohesion mechanism provides a unique opportunity to gain mechanistic insight into cohesin function and supports synapsis-based models for cohesin-dependent sister chromatid pairing.

Publish Date
Language
English
Pages
93

Buy this book

Book Details


Edition Notes

Thesis (M.Sc.)--University of Toronto, 2005.

Electronic version licensed for access by U. of T. users.

Source: Masters Abstracts International, Volume: 44-01, page: 0253.

GERSTEIN MICROTEXT copy on microfiche (2 microfiches).

The Physical Object

Pagination
93 leaves.
Number of pages
93

ID Numbers

Open Library
OL20238447M
ISBN 10
0494022442

Community Reviews (0)

Feedback?
No community reviews have been submitted for this work.

Lists

This work does not appear on any lists.

History

Download catalog record: RDF / JSON
January 24, 2010 Edited by WorkBot add more information to works
December 11, 2009 Created by WorkBot add works page