A proposed unified interphase nucleus chromosome structure: Preliminary preponderance of evidence

Author:

Sedat John1,McDonald Angus2,Cang Hu3,Lucas Joseph4,Arigovindan Muthuvel5,Kam Zvi6,Murre Cornelis4,Elbaum Michael7ORCID

Affiliation:

1. Department of Biochemistry and Biophysics, University of California, San Francisco, CA 94158

2. Micron School of Materials Science & Engineering, Boise State University, Boise, ID 83725

3. Salk Institute for Biological Studies, La Jolla, CA 92037

4. Division of Biological Sciences, Department of Molecular Biology, University of California, San Diego, CA 92092

5. Department of Electrical Engineering, Indian Institute of Science, 560012 Bengaluru, India

6. Department of Molecular Cell Biology, Weizmann Institute of Sciences, 760001 Rehovot, Israel

7. Department of Chemical and Biological Physics, Weizmann Institute of Sciences, 760001 Rehovot, Israel

Abstract

Cryoelectron tomography of the cell nucleus using scanning transmission electron microscopy and deconvolution processing technology has highlighted a large-scale, 100- to 300-nm interphase chromosome structure, which is present throughout the nucleus. This study further documents and analyzes these chromosome structures. The paper is divided into four parts: 1) evidence (preliminary) for a unified interphase chromosome structure; 2) a proposed unified interphase chromosome architecture; 3) organization as chromosome territories (e.g., fitting the 46 human chromosomes into a 10-μm-diameter nucleus); and 4) structure unification into a polytene chromosome architecture and lampbrush chromosomes. Finally, the paper concludes with a living light microscopy cell study showing that the G1 nucleus contains very similar structures throughout. The main finding is that this chromosome structure appears to coil the 11-nm nucleosome fiber into a defined hollow structure, analogous to a Slinky helical spring [ https://en.wikipedia.org/wiki/Slinky ; motif used in Bowerman et al. , eLife 10, e65587 (2021)]. This Slinky architecture can be used to build chromosome territories, extended to the polytene chromosome structure, as well as to the structure of lampbrush chromosomes.

Funder

Foundation for the National Institutes of Health

Israel Science Foundation

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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