
Publikationen von Ana J. García-Sáez
Alle Typen
Zeitschriftenartikel (135)
1.
Zeitschriftenartikel
85 (2025)
MLKL activity requires a splicing-regulated, druggable intramolecular interaction. Molecular Cell 2.
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16, 2951 (2025)
Ferroptosis spreads to neighboring cells via plasma membrane contacts. Nature Communications 3.
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106, 107762 (2025)
MitoSkel: AI tool for semantic segmentation and quantification of mitochondria from light microscopy images. Biomedical Signal Processing and Control 4.
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A novel biosensor for the spatiotemporal analysis of STING activation during innate immune responses to dsDNA. The EMBO Journal (2025)
5.
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16, 40 (2025)
Ferroptosis triggers mitochondrial fragmentation via Drp1 activation. Cell Death and Disease 6.
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68 (2), S. 1179 - 1194 (2025)
Modulation of Mitochondria-Endoplasmic Reticulum Contacts (MERCs) by Small Molecules as a New Strategy for Restoring Lipid Metabolism in an Amyotrophic Lateral Sclerosis Model. Journal of Medicinal Chemistry 7.
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40 (47), S. 2561 - 2568 (2024)
Iron-Induced Lipid Oxidation Alters Membrane Mechanics Favoring Permeabilization. Langmuir 8.
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22, 541 (2024)
Targeting mitochondrial metabolism by the mitotoxin bromoxib in leukemia and lymphoma cells. Cell Communication and Signaling 9.
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75, 103211 (2024)
Ferroptosis in health and disease. Redox Biology: an official journal of the Society for Free Radical Biology and Medicine 10.
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26 (9), S. 1447 - 1457 (2024)
A guideline on the molecular ecosystem regulating ferroptosis. Nature Cell Biology 11.
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15, 4700 (2024)
Lipid unsaturation promotes BAX and BAK pore activity during apoptosis. Nature Communications 12.
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7 (8), e202402608 (2024)
Nanobodies as novel tools to monitor the mitochondrial fission factor Drp1. Life science alliance 13.
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187 (9), S. 2117 - 2119 (2024)
Many paths lead to immunology. Cell 14.
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10, 125 (2024)
Novel meriolin derivatives activate the mitochondrial apoptosis pathway in the presence of antiapoptotic Bcl-2. Cell Death Discovery 15.
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626, S. 401 - 410 (2024)
7-Dehydrocholesterol is an endogenous suppressor of ferroptosis. Nature 16.
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136 (22), jcs260790 (2023)
Expanding roles of BCL-2 proteins in apoptosis execution and beyond. Journal of Cell Science 17.
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24 (10), S. 732 - 748 (2023)
Mechanisms of BCL-2 family proteins in mitochondrial apoptosis. Nature Reviews Molecular Cell Biology 18.
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114, 102778 (2023)
Calcium as a master regulator of ferroptosis and other types of regulated necrosis. Cell Calcium 19.
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14 (8), 1638 (2023)
Exploring the Binding Affinity of the ARR2 GARP DNA Binding Domain via Comparative Methods. Genes 20.
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Dying in self-defense: cell death signaling in animals and plants. Cell Death and Differentiation (2023)
21.
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30 (5), S. 1097 - 1154 (2023)
Apoptotic cell death in disease—Current understanding of the NCCD 2023. Cell Death and Differentiation 22.
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62 (18), e202219050 (2023)
Reversible Live-Cell Labeling with Retro-engineered HaloTags Enables Long-Term High- and Super-Resolution Imaging. Angewandte Chemie, International Edition in English 23.
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127 (15), S. 3490 - 3496 (2023)
Real-Time Growth Kinetics Analysis of Macromolecular Assemblies in Cells with Single Molecule Resolution. The Journal of Physical Chemistry A 24.
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290 (8), S. 1940 - 1942 (2023)
Editor Profile: Ana García Sáez. The FEBS Journal 25.
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83 (6), S. 843 - 856 (2023)
Mitochondrial pores at the crossroad between cell death and inflammatory signaling. Molecular Cell 26.
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30 (3), S. 731 - 741 (2023)
Visualization of BOK pores independent of BAX and BAK reveals a similar mechanism with differing regulation. Cell Death and Differentiation 27.
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39 (6), S. 2450 - 2459 (2023)
Structural Insights into Polymer-Bounded Lipid Nanodiscs. Langmuir 28.
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15, 80 (2023)
The Important Role of Membrane Fluidity on the Lytic Mechanism of the α-Pore-Forming Toxin Sticholysin I. toxins 29.
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28, S. 3235 - 3250 (2022)
MLKL promotes cellular differentiation in myeloid leukemia by facilitating the release of G-CSF. Cell Death and Differentiation 30.
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79 (6), 284 (2022)
Curcumin and NCLX inhibitors share anti-tumoral mechanisms in microsatellite-instability-driven colorectal cancer. Cellular and Molecular Life Sciences 31.
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82 (5), S. 933 - 949 (2022)
The interplay between BAX and BAK tunes apoptotic pore growth to control mitochondrial-DNA-mediated inflammation. Molecular Cell 32.
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41 (8), e108587 (2022)
DRP1 interacts directly with BAX to induce its activation and apoptosis. The EMBO Journal 33.
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13 (3), S. 822 - 829 (2022)
Systematic Assessment of the Accuracy of Subunit Counting in Biomolecular Complexes Using Automated Single-Molecule Brightness Analysis. The Journal of Physical Chemistry Letters 34.
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41 (2), e108690 (2021)
BCL-2-family protein tBID can act as a BAX-like effector of apoptosis. The EMBO Journal 35.
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232, S. 375 - 398 (2021)
Behaviour and interactions of proteins and peptides with and within membranes; from simple models to cellular membranes: general discussion. Faraday Discussions 36.
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232, S. 256 - 281 (2021)
Theoretical and experimental studies of complex peptide–membrane systems: general discussion. Faraday Discussions 37.
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232, S. 149 - 171 (2021)
Theoretical and experimental comparisons of simple peptide–membrane systems; towards defining the reaction space: general discussion. Faraday Discussions 38.
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1863 (12), 183716 (2021)
Apoptosis regulation at the mitochondria membrane level. Biochimica et Biophysica Acta: BBA 39.
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232, S. 86 - 102 (2021)
Bcl-xL inhibits tBid and Bax via distinct mechanisms. Faraday Discussions 40.
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37 (21), S. 3998 - 4000 (2021)
DeepSinse: deep learning-based detection of single molecules. Bioinformatics 41.
Zeitschriftenartikel
13 (9), 669 (2021)
Force Mapping Study of Actinoporin Effect in Membranes Presenting Phase Domains. Toxins 42.
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69, S. 108 - 116 (2021)
Techniques for studying membrane pores. Current Opinion in Structural Biology 43.
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28 (5), S. 1644 - 1657 (2021)
Ferroptotic pores induce Ca2+ fluxes and ESCRT-III activation to modulate cell death kinetics. Cell Death and Differentiation 44.
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49 (2), S. 663 - 674 (2021)
Mechanisms of mitochondrial cell death. Biochemical Society Transactions 45.
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78 (8), S. 3777 - 3790 (2021)
Mitochondrial outer membrane permeabilization at the single molecule level. Cellular and Molecular Life Sciences 46.
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117 (50), S. 31871 - 31881 (2020)
TAT-RasGAP317-326 kills cells by targeting inner-leaflet–enriched phospholipids. Proceedings of the National Academy of Sciences of the United States of America 47.
Zeitschriftenartikel
10, 1638 (2020)
The Mysteries around the BCL-2 Family Member BOK. Biomolecules 48.
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27 (11), S. 1003 - 1004 (2020)
Lipids glue BAK dimers together. Nature Structural & Molecular Biology 49.
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39 (23), e105753 (2020)
Pore formation in regulated cell death. The EMBO Journal 50.
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21 (10), S. 564 - 565 (2020)
The BCL-2 family saga. Nature Reviews Molecular Cell Biology 51.
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6, 90 (2020)
Apoptotic stress induces Bax-dependent, caspase-independent redistribution of LINC complex nesprins. Cell Death Discovery 52.
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27 (9), S. 2620 - 2634 (2020)
Drp1 modulates mitochondrial stress responses to mitotic arrest. Cell Death and Differentiation 53.
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594 (14), S. 2240 - 2253 (2020)
Structural characterization of an Arf dimer interface: molecular mechanism of Arf-dependent membrane scission. FEBS Letters 54.
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21 (7), 2412 (2020)
Partners in Crime: The Interplay of Proteins and Membranes in Regulated Necrosis. International Journal of Molecular Sciences 55.
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295 (6), S. 1623 - 1636 (2020)
Mitochondrial residence of the apoptosis inducer BAX is more important than BAX oligomerization in promoting membrane permeabilization. Journal of Biological Chemistry 56.
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27 (2), S. 434 - 450 (2020)
Dynein light chain binding determines complex formation and posttranslational stability of the Bcl-2 family members Bmf and Bim. Cell Death and Differentiation 57.
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3 (1), e201900600 (2019)
MERLIN: a novel BRET-based proximity biosensor for studying mitochondria-ER contact sites. Life science alliance 58.
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26 (10), S. 1880 - 1894 (2019)
BFL1 modulates apoptosis at the membrane level through a bifunctional and multimodal mechanism showing key differences with BCLXL. Cell Death and Differentiation 59.
Zeitschriftenartikel
8 (10), 1176 (2019)
The Incomplete Puzzle of the BCL2 Proteins. Cells 60.
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9, 13013 (2019)
A new perspective on membrane-embedded Bax oligomers using DEER and bioresistant orthogonal spin labels. Scientific Reports 61.
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16 (8), S. 711 - 714 (2019)
Quantitative analysis of super-resolved structures using ASAP. Nature Methods 62.
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286 (8), S. 1540 - 1542 (2019)
MAVS-induced mitochondrial membrane remodeling. The FEBS Journal 63.
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218 (2), S. 683 - 699 (2019)
Single event visualization of unconventional secretion of FGF2. Journal of Cell Biology 64.
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25 (10), S. 1717 - 1731 (2018)
Topology of active, membrane-embedded Bax in the context of a toroidal pore. Cell Death and Differentiation 65.
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19, S. 3273 - 3278 (2018)
Scanning Fluorescence Correlation Spectroscopy for Quantification of the Dynamics and Interactions in Tube Organelles of Living Cells. ChemPhysChem 66.
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37 (17), e100340 (2018)
MIM through MOM: the awakening of Bax and Bak pores. The EMBO Journal 67.
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285 (15), S. 2813 - 2827 (2018)
Early activation of CD95 is limited and localized to the cytotoxic synapse. The FEBS Journal 68.
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132 (4), jcs208603 (2018)
Drp1 polymerization stabilizes curved tubular membranes similar to those of constricted mitochondria. Journal of Cell Science 69.
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9 (4), 430 (2018)
Bax retrotranslocation potentiates Bcl-xL’s antiapoptotic activity and is essential for switch-like transitions between MOMP competency and resistance. Cell Death and Disease 70.
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25 (3), S. 486 - 541 (2018)
Molecular mechanisms of cell death: recommendations of the Nomenclature Committee on Cell Death 2018. Cell Death and Differentiation 71.
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9 (3), 286 (2018)
The mycotoxin phomoxanthone A disturbs the form and function of the inner mitochondrial membrane. Cell Death and Disease 72.
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285 (3), S. 416 - 431 (2018)
Bax, Bak and beyond - mitochondrial performance in apoptosis. The FEBS Journal 73.
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5 (1), e1384880 (2018)
Bcl-2 proteins: Unraveling the details of a complex and dynamic network. Molecular & Cellular Oncology 74.
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214 (10), S. 2967 - 2983 (2017)
Transient apoptosis inhibition in donor stem cells improves hematopoietic stem cell transplantation. Journal of experimental medicine: JEM 75.
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46, S. 24 - 30 (2017)
Improving certainty in single molecule imaging. Current Opinion in Structural Biology 76.
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130 (17), S. 2773 - 2774 (2017)
Cell scientist to watch – Ana Garcia-Saez. Journal of Cell Science 77.
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31 (17), S. 1754 - 1769 (2017)
Dynein light chain 1 induces assembly of large Bim complexes on mitochondria that stabilize Mcl-1 and regulate apoptosis. Genes & Development 78.
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113 (4), S. 860 - 868 (2017)
Does Ceramide Form Channels? The Ceramide-Induced Membrane Permeabilization Mechanism. Biophysical Journal 79.
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372 (1726), 20160217 (2017)
Apoptotic foci at mitochondria: in and around Bax pores. Philosophical Transactions B 80.
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8, 73 (2017)
Quantitative interactome of a membrane Bcl-2 network identifies a hierarchy of complexes for apoptosis regulation. Nature Communications 81.
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12 (4), S. 989 - 1000 (2017)
Determinants of BH3 Sequence Specificity for the Disruption of Bcl-xL/cBid Complexes in Membranes. ACS Chemical Biology 82.
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19, S. 175 - 187 (2017)
Necroptosis Execution Is Mediated by Plasma Membrane Nanopores Independent of Calcium. Cell Reports 83.
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27 (4), S. 266 - 275 (2017)
Bax and Bak Pores: Are We Closing the Circle? Trends in Cell Biology 84.
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284 (5), S. 711 - 724 (2017)
The membrane activity of BOK involves formation of large, stable toroidal pores and is promoted by cBID. The FEBS Journal 85.
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26 (3), S. 550 - 565 (2017)
Disrupting a key hydrophobic pair in the oligomerization interface of the actinoporins impairs their pore-forming activity. Protein Science 86.
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1859 (1), S. 17 - 27 (2017)
Pro-apoptotic cBid and Bax exhibit distinct membrane remodeling activities: An AFM study. Biochimica et Biophysica Acta: BBA 87.
Zeitschriftenartikel
195 (1), S. 62 - 71 (2016)
Pushing the size limit of de novo structure ensemble prediction guided by sparse SDSL-EPR restraints to 200 residues: The monomeric and homodimeric forms of BAX. Journal of Structural Biology 88.
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14, 26 (2016)
Quaternary structure of a G-protein-coupled receptor heterotetramer in complex with Gi and Gs. BMC Biology 89.
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30 (8), S. 878 - 880 (2016)
MOMP in the absence of BH3-only proteins. Genes and Development 90.
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1858 (3), S. 457 - 466 (2016)
Assembling the puzzle: Oligomerization of α-pore forming proteins in membranes. Biochimica et Biophysica Acta: BBA 91.
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35 (4), S. 389 - 401 (2016)
Bax assembly into rings and arcs in apoptotic mitochondria is linked to membrane pores. The EMBO Journal 92.
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7, e2121 (2016)
cBid, Bax and Bcl-xL exhibit opposite membrane remodeling activities. Cell Death and Disease 93.
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20 (11), S. 20146 - 20160 (2015)
Membrane Disintegration Caused by the Steroid Saponin Digitonin Is Related to the Presence of Cholesterol. Molecules 94.
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116, S. 70 - 78 (2015)
Differences in activity of actinoporins are related with the hydrophobicity of their N-terminus. Biochimie 95.
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6, 8042 (2015)
Bax monomers form dimer units in the membrane that further self-assemble into multiple oligomeric species. Nature Communications 96.
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Atomic Force Microscopy Imaging and Force Spectroscopy of Supported Lipid Bilayers. Journal of Visualized Experiments (101), e52867 (2015)
97.
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290 (27), S. 17004 - 17019 (2015)
Minimalist Model Systems Reveal Similarities and Differences between Membrane Interaction Modes of MCL1 and BAK. Journal of Biological Chemistry 98.
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248 (3), S. 545 - 561 (2015)
More Than a Pore: The Interplay of Pore-Forming Proteins and Lipid Membranes. The Journal of Membrane Biology 99.
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290 (14), S. 8925 - 8937 (2015)
Formation of disulfide bridges drives oligomerization, membrane pore formation, and translocation of fibroblast growth factor 2 to cell surfaces. Journal of Biological Chemistry 100.
Zeitschriftenartikel
290 (11), S. 6962 - 6974 (2015)
A single herpesvirus protein can mediate vesicle formation in the nuclear envelope. Journal of Biological Chemistry