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Lamin A/C and Emerin depletion impacts chromatin organization and dynamics  in the interphase nucleus | BMC Molecular and Cell Biology | Full Text
Lamin A/C and Emerin depletion impacts chromatin organization and dynamics in the interphase nucleus | BMC Molecular and Cell Biology | Full Text

Lamin B1 Antibody CL488-66095 | Proteintech
Lamin B1 Antibody CL488-66095 | Proteintech

Lamin and the heart | Heart
Lamin and the heart | Heart

Functions and dysfunctions of the nuclear lamin Ig-fold domain in nuclear  assembly, growth, and Emery–Dreifuss muscular dystrophy | PNAS
Functions and dysfunctions of the nuclear lamin Ig-fold domain in nuclear assembly, growth, and Emery–Dreifuss muscular dystrophy | PNAS

Direct Synthesis of Lamin A, Bypassing Prelamin A Processing, Causes  Misshapen Nuclei in Fibroblasts but No Detectable Pathology in Mice* -  Journal of Biological Chemistry
Direct Synthesis of Lamin A, Bypassing Prelamin A Processing, Causes Misshapen Nuclei in Fibroblasts but No Detectable Pathology in Mice* - Journal of Biological Chemistry

Cell Nuclei Spin in the Absence of Lamin B1* - Journal of Biological  Chemistry
Cell Nuclei Spin in the Absence of Lamin B1* - Journal of Biological Chemistry

Laminopathy-causing lamin A mutations reconfigure lamina-associated domains  and local spatial chromatin conformation. - Abstract - Europe PMC
Laminopathy-causing lamin A mutations reconfigure lamina-associated domains and local spatial chromatin conformation. - Abstract - Europe PMC

Concentric organization of A- and B-type lamins predicts their distinct  roles in the spatial organization and stability of the nuclear lamina | PNAS
Concentric organization of A- and B-type lamins predicts their distinct roles in the spatial organization and stability of the nuclear lamina | PNAS

How Does Lamin A/C Acetylation Contribute to Nuclear Architecture?
How Does Lamin A/C Acetylation Contribute to Nuclear Architecture?

Phosphorylation sites on lamin B1 promote mitotic disassembly. (A)... |  Download Scientific Diagram
Phosphorylation sites on lamin B1 promote mitotic disassembly. (A)... | Download Scientific Diagram

Cancers | Free Full-Text | Lamin A/C: Function in Normal and Tumor Cells |  HTML
Cancers | Free Full-Text | Lamin A/C: Function in Normal and Tumor Cells | HTML

Phosphorylated Lamin A/C in the nuclear interior binds active enhancers  associated with abnormal transcription in progeria | bioRxiv
Phosphorylated Lamin A/C in the nuclear interior binds active enhancers associated with abnormal transcription in progeria | bioRxiv

LC3–lamin B1 interaction is required for lamin B1 degradation and... |  Download Scientific Diagram
LC3–lamin B1 interaction is required for lamin B1 degradation and... | Download Scientific Diagram

Lamin and the heart | Heart
Lamin and the heart | Heart

JCI - Good news in the nuclear envelope: loss of lamin A might be a gain
JCI - Good news in the nuclear envelope: loss of lamin A might be a gain

Frontiers | The Emerging Role of Lamin C as an Important LMNA Isoform in  Mechanophenotype | Cell and Developmental Biology
Frontiers | The Emerging Role of Lamin C as an Important LMNA Isoform in Mechanophenotype | Cell and Developmental Biology

Phosphorylated Lamins in Euchromatin: New Clues to Progeria - ScienceDirect
Phosphorylated Lamins in Euchromatin: New Clues to Progeria - ScienceDirect

Structural basis for lamin assembly at the molecular level | Nature  Communications
Structural basis for lamin assembly at the molecular level | Nature Communications

Missense Mutations in the Rod Domain of the Lamin A/C Gene as Causes of  Dilated Cardiomyopathy and Conduction-System Disease | NEJM
Missense Mutations in the Rod Domain of the Lamin A/C Gene as Causes of Dilated Cardiomyopathy and Conduction-System Disease | NEJM

Cells | Free Full-Text | Lamin A/C Mechanotransduction in Laminopathies
Cells | Free Full-Text | Lamin A/C Mechanotransduction in Laminopathies

Role of nuclear Lamin A/C in cardiomyocyte functions
Role of nuclear Lamin A/C in cardiomyocyte functions

LBR and Lamin A/C Sequentially Tether Peripheral Heterochromatin and  Inversely Regulate Differentiation: Cell
LBR and Lamin A/C Sequentially Tether Peripheral Heterochromatin and Inversely Regulate Differentiation: Cell

Phosphorylated Lamin A/C in the Nuclear Interior Binds Active Enhancers  Associated with Abnormal Transcription in Progeria - ScienceDirect
Phosphorylated Lamin A/C in the Nuclear Interior Binds Active Enhancers Associated with Abnormal Transcription in Progeria - ScienceDirect