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Single-molecule observation of DNA compaction by meiotic protein SYCP3

Published version
Peer-reviewed

Type

Article

Change log

Authors

Syrjänen, JL 
Heller, I 
Candelli, A 
Davies, OR 
Peterman, EJG 

Abstract

In a previous paper (Syrjänen et al., 2014), we reported the first structural characterisation of a synaptonemal complex (SC) protein, SYCP3, which led us to propose a model for its role in chromosome compaction during meiosis. As a component of the SC lateral element, SYCP3 has a critical role in defining the specific chromosome architecture required for correct meiotic progression. In the model, the reported compaction of chromosomal DNA caused by SYCP3 would result from its ability to bridge distant sites on a DNA molecule with the DNA-binding domains located at each end of its strut-like structure. Here, we describe a single-molecule assay based on optical tweezers, fluorescence microscopy and microfluidics that, in combination with bulk biochemical data, provides direct visual evidence for our proposed mechanism of SYCP3-mediated chromosome organisation.

Description

Keywords

Meiosis, Protein-DNA interactions, SYCP3, Single-molecule, Synaptonemal complex, biophysics, chromosomes, genes, human, structural biology

Journal Title

eLife

Conference Name

Journal ISSN

2050-084X
2050-084X

Volume Title

6

Publisher

eLife Sciences Publications Ltd
Sponsorship
Medical Research Council (MR/N000161/1)
Wellcome Trust (104641/Z/14/Z)
This work was supported by the European Union's Horizon 2020 research and innovation programme under grant agreement no 654148 Laserlab-Europe, by VICI grants (GJLW and EJGP), a European Research Council starting grant (GJLW) and a H2020 FETopen grant (GJLW and EJGP), by Medical Research Council project grant MR/N000161/1 and Wellcome Trust investigator award 104641/Z/14/Z (LP), and a BBSRC DTP studentship (JLS). ORD is a Sir Henry Dale Fellow jointly funded by the Wellcome Trust and Royal Society (award number 104158/Z/14/Z).