Nuclear envelope rupture and resealing: mechanisms, consequences, and disease implications

Abstract The nuclear envelope (NE) establishes an essential physical separation between the nucleoplasm and cytoplasm in eukaryotic cells. Its structural integrity ensures selective molecular exchange through nuclear pores, a fundamental feature of eukaryotic cells. For this reason, it has long been assumed that the NE remains intact. However, recent studies revealed localized rupture of the NE in diverse physiological and pathological contexts. These ruptures can be resealed by endogenous mechanisms, suggesting that rupture–resealing dynamics contribute to homeostasis and are altered in disease. In the present review, we summarize physiological and pathological contexts in which NE rupture has been observed. We evaluate major hypotheses regarding its causes and consequences and discuss current understanding of the mechanisms and regulation of NE resealing. We conclude by highlighting key knowledge gaps in the pathophysiological roles of NE rupture and resealing.

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Publication Details

Journal
Biochemical Society Transactions
Published
2026-09-24
DOI
https://doi.org/10.1042/bst20250351
Primary Topic
Nuclear Structure and Function
Type
article
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article

Nuclear envelope rupture and resealing: mechanisms, consequences, and disease implications

Kohta Ikegami, Atsuki En
Biochemical Society Transactions
Nuclear Structure and Function
article

Nuclear envelope rupture and resealing: mechanisms, consequences, and disease implications

Kohta Ikegami, Atsuki En
article en

Abstract

Abstract The nuclear envelope (NE) establishes an essential physical separation between the nucleoplasm and cytoplasm in eukaryotic cells. Its structural integrity ensures selective molecular exchange through nuclear pores, a fundamental feature of eukaryotic cells. For this reason, it has long been assumed that the NE remains intact. However, recent studies revealed localized rupture of the NE in diverse physiological and pathological contexts. These ruptures can be resealed by endogenous mechanisms, suggesting that rupture–resealing dynamics contribute to homeostasis and are altered in disease. In the present review, we summarize physiological and pathological contexts in which NE rupture has been observed. We evaluate major hypotheses regarding its causes and consequences and discuss current understanding of the mechanisms and regulation of NE resealing. We conclude by highlighting key knowledge gaps in the pathophysiological roles of NE rupture and resealing.

Biochemical Society TransactionsVol. 54(10)
Cincinnati Children's Hospital Medical Center (US), University of Cincinnati Medical Center (US)
Openalex Percentile: Top 19%
Nuclear Structure and Function
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Nuclear envelope rupture and resealing: mechanisms, consequences, and disease implications — Kohta Ikegami, Atsuki En · Biochemical Society Transactions (2026) | TGRS Research Map | TGRS