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Chromatin structure. Evidence that the 30-nm fiber is a helical coil with 12 nucleosomes/turn.

Data up to Jan 2025

Published1987
Citations19
References29

Total Citations Per Year

Abstract

References (29)

Physical chemistry of macromolecules

1962 • 2,105 citations

Involvement of histone H1 in the organization of the nucleosome and of the salt-dependent superstructures of chromatin.

1979 • 1,532 citations

Solenoidal model for superstructure in chromatin.

1976 • 1,223 citations

The higher-order structure of chromatin: evidence for a helical ribbon arrangement.

1984 • 364 citations

Structure of the 3000Å chromatin filament: X-ray diffraction from oriented samples

1985 • 267 citations

Chromatin fibers are left-handed double helices with diameter and mass per unit length that depend on linker length

1986 • 244 citations

Changes in chromatin folding in solution

1980 • 235 citations

Physicochemical studies of the folding of the 100 Å nucleosome filament into the 300 Å filament

1986 • 224 citations

Centrifugation: A Practical Approach

1985 • 222 citations

Higher order coiling of DNA in chromatin

1977 • 203 citations

Structure of the 30 nm chromatin fiber

1986 • 190 citations

Differences of supranucleosomal organization in different kinds of chromatin: cell type-specific globular subunits containing different numbers of nucleosomes.

1984 • 95 citations

Centrifugation in Density Gradients

1982 • 89 citations

Involvement of the globular domain of histone H1 in the higher order structures of chromatin

1984 • 67 citations

Possible nucleosome arrangements in the higher-order structure of chromatin

1983 • 62 citations

A triple helix model for the structure of chromatin fiber

1985 • 52 citations

Electron microscope specimen preparation of rat liver chromatin by a modified Miller spreading technique.

1981 • 48 citations

A helical polysome model

1965 • 46 citations

The protein kinases of rat liver nuclei

1980 • 37 citations

Modulation of the sensitivity of chromatin to exogenous nucleases: implications for the apparent increased sensitivity of transcriptionally-active genes

1986 • 31 citations

Heterogeneity of the chromosome fiber

1979 • 30 citations

Organization of nucleosomes and spacer DNA in chromatin fibres

1980 • 29 citations

Higher order folding of two different classes of chromatin isolated from chicken erythrocyte nuclei. A light scattering study

1982 • 28 citations

Chromatin structure. Nuclease digestion profiles reflect intermediate stages in the folding of the 30-nm fiber rather than the existence of subunit beads.

1986 • 28 citations

Chromatin freeze fracture electron microscopy: a comparative study of core particles, chromatin, metaphase chromosomes, and nuclei

1980 • 27 citations

Nucleomeric Organization of Chromatin

1982 • 26 citations

Higher Order Structure of Chromatin: Influence of Ionic Strength and Proteolytic Digestion on the Birefringence Properties of Polynucleosomal Fibers

1985 • 17 citations

Chromatin structure. Further evidence against the existence of a beaded subunit for the 30-nm fiber.

1987 • 9 citations

Chromatin Folding Into Higher Order Structure

1986 • 7 citations

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Chromatin structure. Evidence that the 30-nm fiber is a helical coil with 12… (1987) – Journal of Biological Chemistry | Metascience Observatory Explorer