Penn State University College of Medicine, Department of Biochemistry & Molecular Biology, H171, Milton S. Hershey Medical Center, P.O. Box 850, 500 University Drive, Hershey, PA 17033, USA.
Penn State University College of Medicine, Department of Biochemistry & Molecular Biology, H171, Milton S. Hershey Medical Center, P.O. Box 850, 500 University Drive, Hershey, PA 17033, USA.
Mol Cell. 2023 Sep 21;83(18):3236-3252.e7. doi: 10.1016/j.molcel.2023.08.017. Epub 2023 Sep 7.
Nucleosome chains fold and self-associate to form higher-order structures whose internal organization is unknown. Here, cryoelectron tomography (cryo-ET) of native human chromatin reveals intrinsic folding motifs such as (1) non-uniform nucleosome stacking, (2) intermittent parallel and perpendicular orientations of adjacent nucleosome planes, and (3) a regressive nucleosome chain path, which deviates from the direct zigzag topology seen in reconstituted nucleosomal arrays. By examining the self-associated structures, we observed prominent nucleosome stacking in cis and anti-parallel nucleosome interactions, which are consistent with partial nucleosome interdigitation in trans. Histone citrullination strongly inhibits nucleosome stacking and self-association with a modest effect on chromatin folding, whereas the reconstituted arrays undergo a dramatic unfolding into open zigzag chains induced by histone citrullination. This study sheds light on the internal structure of compact chromatin nanoparticles and suggests a mechanism for how epigenetic changes in chromatin folding are retained across both open and condensed forms.
核小体链折叠并自我缔合形成高级结构,其内部组织尚不清楚。在这里,对天然人染色质的冷冻电镜断层扫描(cryo-ET)揭示了内在的折叠模式,如(1)核小体堆积不均匀,(2)相邻核小体平面的平行和垂直取向间歇性,以及(3)退行核小体链路径,这偏离了在重组核小体阵列中看到的直接之字形拓扑结构。通过检查自关联结构,我们观察到顺式和反平行核小体相互作用中明显的核小体堆积,这与跨式部分核小体交错一致。组蛋白瓜氨酸化强烈抑制核小体堆积和自缔合,对染色质折叠的影响较小,而重组阵列在组蛋白瓜氨酸化的诱导下经历剧烈的展开为开放之字形链。这项研究揭示了紧凑染色质纳米颗粒的内部结构,并提出了一种机制,说明染色质折叠的表观遗传变化如何在开放和浓缩形式之间保留。