Molecular architecture of heterochromatin at the nuclear periphery of primary human cells

J Jan Philipp Kreysing S Sergio Cruz-León J Johannes Betz C Carlotta Penzo T Tomáš Majtner M Markus Schreiber B Beata Turoňová M Marina Lusic G Gerhard Hummer (Department of Theoretical Biophysics) M Martin Beck

Abstract

Abstract In eukaryotes, meters of DNA are packaged into micrometer scale nuclei. Nucleosomes, as the major organizational unit, have been extensively studied in vitro, yet the elaborate 3D structure of chromatin inside cells and its distinct oligo-nucleosome arrangements remain poorly resolved. Here, we combine cryo-electron tomography with template matching, subtomogram averaging and molecular simulations to visualize nucleosomes and chromatin structure inside human cells. We confidently assign individual nucleosomes and report their in-situ structure at secondary structure resolution. By predicting the paths of linker DNA, we identify oligo-nucleosome arrangements and uncover higher-order chromatin structures in situ, including a 37-nm wide, elongated but non-fibrous arrangement. In situ structural biology thus reveals the molecular chromatin organization inside cells and sets the stage for 3D genomics.

Article Details

Volume / Issue Vol. 17, Issue 1
Published July 03, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (10)

J

Jan Philipp Kreysing

S

Sergio Cruz-León

J

Johannes Betz

C

Carlotta Penzo

T

Tomáš Majtner

M

Markus Schreiber

B

Beata Turoňová

M

Marina Lusic

G

Gerhard Hummer

Department of Theoretical Biophysics

M

Martin Beck