The 10-nm chromatin fiber and its relationship to interphase chromosome organization

Author:

Hansen Jeffrey C.1,Connolly Mark1,McDonald Charles J.1,Pan Anyu1,Pryamkova Anna1,Ray Kyle1,Seidel Erik1,Tamura Sachiko2,Rogge Ryan1,Maeshima Kazuhiro2

Affiliation:

1. Department of Biochemistry and Molecular Biology, Colorado State University, Fort Collins, CO 80523, U.S.A.

2. Biological Macromolecules Laboratory, Structural Biology Center, National Institute of Genetics and Department of Genetics, Sokendai (Graduate University for Advanced Studies), Mishima, Shizuoka 411-8540, Japan

Abstract

A chromosome is a single long DNA molecule assembled along its length with nucleosomes and proteins. During interphase, a mammalian chromosome exists as a highly organized supramolecular globule in the nucleus. Here, we discuss new insights into how genomic DNA is packaged and organized within interphase chromosomes. Our emphasis is on the structural principles that underlie chromosome organization, with a particular focus on the intrinsic contributions of the 10-nm chromatin fiber, but not the regular 30-nm fiber. We hypothesize that the hierarchical globular organization of an interphase chromosome is fundamentally established by the self-interacting properties of a 10-nm zig-zag array of nucleosomes, while histone post-translational modifications, histone variants, and chromatin-associated proteins serve to mold generic chromatin domains into specific structural and functional entities.

Publisher

Portland Press Ltd.

Subject

Biochemistry

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