about
When lamins go bad: nuclear structure and diseaseThe nuclear lamina is mechano-responsive to ECM elasticity in mature tissueSumoylation and transcription regulation at nuclear poresNuclear trafficking of retroviral RNAs and Gag proteins during late steps of replicationLamin B1 protein is required for dendrite development in primary mouse cortical neuronsIntracellular oxygen determined by respiration regulates localization of Ras and prenylated proteins.Roles of endothelial A-type lamins in migration of T cells on and under endothelial layers.Genetic Variations Leading to Familial Dilated CardiomyopathyA Novel Role of Lamins from Genetic Disease to Cancer BiomarkersStructural and functional adaptations of the mammalian nuclear envelope to meet the meiotic requirementsDefects of Lipid Synthesis Are Linked to the Age-Dependent Demyelination Caused by Lamin B1 OverexpressionDifferential Predictive Roles of A- and B-Type Nuclear Lamins in Prostate Cancer ProgressionLysosome-mediated processing of chromatin in senescence.Specifying peripheral heterochromatin during nuclear lamina reassembly.Interphase phosphorylation of lamin A.Lamin B1 overexpression increases nuclear rigidity in autosomal dominant leukodystrophy fibroblasts.Macromolecular transport between the nucleus and the cytoplasm: Advances in mechanism and emerging links to disease.The expanding significance of keratin intermediate filaments in normal and diseased epitheliaNuclear lamina builds tissues from the stem cell niche.PKC412 normalizes mutation-related keratin filament disruption and hepatic injury in mice by promoting keratin-myosin binding.Lamins position the nuclear pores and centrosomes by modulating dynein.The International Nucleome Consortium.Unfolding the story of chromatin organization in senescent cells.Telomeres, tethers and trypanosomes.Genome-wide CpG island methylation and intergenic demethylation propensities vary among different tumor sites.Endothelial nuclear lamina is not required for glucocorticoid receptor nuclear import but does affect receptor-mediated transcription activationThe human protein PRR14 tethers heterochromatin to the nuclear lamina during interphase and mitotic exit.Mutation of caspase-digestion sites in keratin 18 interferes with filament reorganization, and predisposes to hepatocyte necrosis and loss of membrane integrity.Concentration-dependent lamin assembly and its roles in the localization of other nuclear proteinsSomething silent this way forms: the functional organization of the repressive nuclear compartment.Drugs that modulate aging: the promising yet difficult path ahead.Partners and post-translational modifications of nuclear laminsImplications of multipotent mesenchymal stromal cell aging.NMCP/LINC proteins: putative lamin analogs in plants?Closing the (nuclear) envelope on the genome: how nuclear lamins interact with promoters and modulate gene expression.Lamina-associated polypeptide (LAP)2α and nucleoplasmic lamins in adult stem cell regulation and disease.The intriguing plant nuclear laminaRole of nuclear Lamin A/C in cardiomyocyte functions.The plant nuclear envelope as a multifunctional platform LINCed by SUN and KASH.Mammalian telomeres and their partnership with lamins.
P2860
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P2860
description
2012 nî lūn-bûn
@nan
2012年の論文
@ja
2012年論文
@yue
2012年論文
@zh-hant
2012年論文
@zh-hk
2012年論文
@zh-mo
2012年論文
@zh-tw
2012年论文
@wuu
2012年论文
@zh
2012年论文
@zh-cn
name
Nuclear lamin functions and disease.
@en
type
label
Nuclear lamin functions and disease.
@en
prefLabel
Nuclear lamin functions and disease.
@en
P2093
P2860
P1433
P1476
Nuclear lamin functions and disease.
@en
P2093
Anne E Goldman
Robert D Goldman
Stephen A Adam
Veronika Butin-Israeli
P2860
P304
P356
10.1016/J.TIG.2012.06.001
P577
2012-07-12T00:00:00Z