Higher-Order Structure Of Chromatin From Resting Cells : Ii. High-Resolution Computer Analysis Of Native Chromatin Fibres And Freeze-Etching Of Nuclei From Rat Liver Cells

Claudio Nicolini, B Cavazza, V. Trefiletti, Franco Pioli, Francesco Beltrame, Giovanni Brambilla, N. M. Maraldi, Eligio Patrone

Journal of Cell Science · 1983 · 18 citations · 17 references

Concepts

Abstract

Non-destructive electron microscopy of native chromatin from rat liver nuclei reveals that the 30 nm fibre is formed of four 11 nm nucleofilaments, arranged in a coiled-coil (or rope-like) conformation. At low ionic strength, native fibres show an alternating pattern of compact and unwound regions. Freeze-etching experiments carried out on the same nuclei are compatible with the existence of periodic attachments of the fibres to the nuclear envelope near the pores in a regular, drapery-like fashion. For the first time, computer image analysis has been applied to electron micrographs of giant chromatin fibres and a few essential geometrical parameters characterizing the conformation of the higher-order structures have been determined. No significant difference has been found between calf thymus and rat liver chromatin.

References

17