Lin DH, Hoelz A (2019) The structure of the nuclear pore complex (an update). Annu Rev Biochem 88:725–783. https://doi.org/10.1146/annurev-biochem-062917-011901
Article CAS PubMed PubMed Central Google Scholar
Murray-Nerger LA, Cristea IM (2021) Lamin post-translational modifications: emerging toggles of nuclear organization and function. Trends Biochem Sci 46:832–847. https://doi.org/10.1016/j.tibs.2021.05.007
Article CAS PubMed PubMed Central Google Scholar
Starr DA, Fridolfsson HN (2010) Interactions between nuclei and the cytoskeleton are mediated by SUN-KASH nuclear-envelope bridges. Annu Rev Cell Dev Biol 26:421–444. https://doi.org/10.1146/annurev-cellbio-100109-104037
Article CAS PubMed PubMed Central Google Scholar
Niethammer P (2021) Components and mechanisms of Nuclear Mechanotransduction. Annu Rev Cell Dev Biol 37:233–256. https://doi.org/10.1146/annurev-cellbio-120319-030049
Article CAS PubMed PubMed Central Google Scholar
Bragulat-Teixidor H, Ishihara K, Szucs GM, Otsuka S (2024) The endoplasmic reticulum connects to the nucleus by constricted junctions that mature after mitosis. EMBO Rep 25:3137–3159. https://doi.org/10.1038/s44319-024-00175-w
Article PubMed PubMed Central Google Scholar
Meszaros N, Cibulka J, Mendiburo MJ, Romanauska A, Schneider M, Kohler A (2015) Nuclear pore basket proteins are tethered to the nuclear envelope and can regulate membrane curvature. Dev Cell 33:285–298. https://doi.org/10.1016/j.devcel.2015.02.017
Article CAS PubMed PubMed Central Google Scholar
Bahmanyar S, Schlieker C (2020) Lipid and protein dynamics that shape nuclear envelope identity. Mol Biol Cell 31:1315–1323. https://doi.org/10.1091/mbc.E18-10-0636
Article CAS PubMed PubMed Central Google Scholar
Ungricht R, Kutay U (2017) Mechanisms and functions of nuclear envelope remodelling. Nat Rev Mol Cell Biol 18:229–245. https://doi.org/10.1038/nrm.2016.153
Article CAS PubMed Google Scholar
Echevarria W, Leite MF, Guerra MT, Zipfel WR, Nathanson MH (2003) Regulation of calcium signals in the nucleus by a nucleoplasmic reticulum. Nat Cell Biol 5:440–446
Article CAS PubMed PubMed Central Google Scholar
Fricker M, Hollinshead M, White N, Vaux D (1997) Interphase nuclei of many mammalian cell types contain deep, dynamic, tubular membrane-bound invaginations of the nuclear envelope. J Cell Biol 136:531–544
Article CAS PubMed PubMed Central Google Scholar
Park PC, De Boni U (1992) Nuclear membrane modifications in polytene nuclei of Drosophila melanogaster: serial reconstruction and cytochemistry. Anat Rec 234:15–26. https://doi.org/10.1002/ar.1092340103
Article CAS PubMed Google Scholar
Schermelleh L, Carlton PM, Haase S, Shao L, Winoto L, Kner P, Burke B, Cardoso MC, Agard DA, Gustafsson MG, Leonhardt H, Sedat JW (2008) Subdiffraction multicolor imaging of the nuclear periphery with 3D structured illumination microscopy. Science 320:1332–1336. https://doi.org/10.1126/science.1156947
Article CAS PubMed PubMed Central Google Scholar
Bourgeois CA, Hemon D, Bouteille M (1979) Structural relationship between the nucleolus and the nuclear envelope. J Ultrastruct Res 68:328–340. https://doi.org/10.1016/s0022-5320(79)90165-5
Article CAS PubMed Google Scholar
Malhas A, Goulbourne C, Vaux DJ (2011) The nucleoplasmic reticulum: form and function. Trends Cell Biol 21:362–373. https://doi.org/10.1016/j.tcb.2011.03.008
Article CAS PubMed Google Scholar
Johnson N, Krebs M, Boudreau R, Giorgi G, LeGros M, Larabell C (2003) Actin-filled nuclear invaginations indicate degree of cell de-differentiation. Differentiation 71:414–424
Stiekema M, Houben F, Verheyen F, Borgers M, Menzel J, Meschkat M, van Zandvoort M, Ramaekers FCS, Broers JLV (2022) The role of lamins in the nucleoplasmic reticulum, a Pleiomorphic Organelle that enhances nucleo-cytoplasmic interplay. Front Cell Dev Biol 10:914286. https://doi.org/10.3389/fcell.2022.914286
Article PubMed PubMed Central Google Scholar
Lagace TA, Ridgway ND (2005) The rate-limiting enzyme in phosphatidylcholine synthesis regulates proliferation of the nucleoplasmic reticulum. Mol Biol Cell 16:1120–1130
Article CAS PubMed PubMed Central Google Scholar
Drozdz MM, Vaux DJ (2017) Shared mechanisms in physiological and pathological nucleoplasmic reticulum formation. Nucleus 8:34–45. https://doi.org/10.1080/19491034.2016.1252893
Article CAS PubMed Google Scholar
Bozler J, Nguyen HQ, Rogers GC, Bosco G (2014) Condensins exert force on chromatin-nuclear envelope tethers to mediate nucleoplasmic reticulum formation in Drosophila melanogaster. G3 (Bethesda) 5:341–352. https://doi.org/10.1534/g3.114.015685
Shokrollahi M, Stanic M, Hundal A, Chan JNY, Urman D, Jordan CA, Hakem A, Espin R, Hao J, Krishnan R, Maass PG, Dickson BC, Hande MP, Pujana MA, Hakem R, Mekhail K (2024) DNA double-strand break-capturing nuclear envelope tubules drive DNA repair. Nat Struct Mol Biol. https://doi.org/10.1038/s41594-024-01286-7
Legartova S, Stixova L, Laur O, Kozubek S, Sehnalova P, Bartova E (2014) Nuclear structures surrounding internal lamin invaginations. J Cell Biochem 115:476–487. https://doi.org/10.1002/jcb.24681
Article CAS PubMed Google Scholar
Dazzoni R, Bure C, Morvan E, Grelard A, Gounou C, Schmitter JM, Loquet A, Larijani B, Dufourc EJ (2020) Tandem NMR and mass spectrometry analysis of human nuclear membrane lipids. Anal Chem 92:6858–6868. https://doi.org/10.1021/acs.analchem.9b05052
Article CAS PubMed Google Scholar
Dazzoni R, Grelard A, Morvan E, Bouter A, Applebee CJ, Loquet A, Larijani B, Dufourc EJ (2020) The unprecedented membrane deformation of the human nuclear envelope, in a magnetic field, indicates formation of nuclear membrane invaginations. Sci Rep 10:5147. https://doi.org/10.1038/s41598-020-61746-0
Article CAS PubMed PubMed Central Google Scholar
Lagace TA, Ridgway ND (2013) The role of phospholipids in the biological activity and structure of the endoplasmic reticulum. Biochem Biophy Acta 1833:2499–2510. https://doi.org/10.1016/j.bbamcr.2013.05.018
Jacquemyn J, Cascalho A, Goodchild RE (2017) The ins and outs of endoplasmic reticulum-controlled lipid biosynthesis. EMBO Rep 18:1905–1921. https://doi.org/10.15252/embr.201643426
Article CAS PubMed PubMed Central Google Scholar
Domingues N, Pires J, Milosevic I, Raimundo N (2024) Role of lipids in interorganelle communication. Trends Cell Biol. https://doi.org/10.1016/j.tcb.2024.04.008
Romanauska A, Kohler A (2018) The inner nuclear membrane is a metabolically active territory that generates nuclear lipid droplets. Cell 174:700–715. https://doi.org/10.1016/j.cell.2018.05.047
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