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by Estrada Gil, Karol and Styrkarsdottir, Unnur and Evangelou, Evangelos and Hsu, Yi-Hsiang and Duncan, Emma and Ntzani, Evangelia and Oei, Ling and Albagha, Omar M and Amin, Najaf and Kemp, John and Koller, Daniel and Li, Guo and Liu, Ching-Ti and Minster, Ryan and Moayyeri, Alireza and Vandenput, Liesbeth and Willner, Dana and Xiao, Su-Mei and Yerges-Armstrong, Laura and Zheng, Hou-Feng and Alonso, Nerea and Eriksson, Joel and Kammerer, Candace and Kaptoge, Stephen and Leo, Paul and Thorleifsson, Gudmar and Wilson, Scott and Wilson, James and Aalto, Ville and Alen, Theo and Aragaki, Aaron and Aspelund, Thor and Center, Jacqueline and Dailiana, Zoe and Duggan, C and Garcia, Melissa and Garcia-Giralt, Natàlia and Giroux, Sylvie and Hallmans, Göran and Hocking, Lynne and Husted, Lise Bjerre and Jameson, Karen and Khusainova, Rita and Kim, Ghi Su and Kooperberg, Charles and Koromila, Theodora and Kruk, Marcin and Laaksonen, Marika and LaCroix, Anea and Lee, Seung and Leung, Ping and Lewis, Joshua and Masi, Laura and Mencej-Beac, Simona and Nguyen, Tuan and Nogues, Xavier and Patel, Millan and Prezelj, Janez and Rose, Lynda and Scollen, Serena and Siggeirsdottir, Kristin and Smith, G.D and Svensson, Olle and Trompet, Stella and Trummer, Olivia and Schoor, Natasja and Woo, Margaret M and Zhu, Kun and Balcells, Susana and Brandi, M.L and Buckley, Brendan M and Cheng, Sulin and Christiansen, C and Cooper, Charles and Dedoussis, George and Ford, Ian and Frost, Morten and Goltzman, David and González-Macías, Jesús and Kähönen, Mika and Karlsson, Magnus and Khusnutdinova, Elza and Koh, Jung-Min and Kollia, Panagoula and Langdahl, Bente and Leslie, William and Lips, Paul and Ljunggren, Östen and Lorenc, Roman and Marc, Janja and Mellström, Dan and Obermayer-Pietsch, Barbara and Olmos, David and Pettersson-Kymmer, Ulrika and Reid, David and Riancho, José and Ridker, Paul and Rousseau, Francois and Lagboom, P Eline and Tang, Nelson L and ... and Medicinska fakulteten and Umeå universitet and Institutionen för folkhälsa och klinisk medicin and Institutionen för farmakologi och klinisk neurovetenskap and Klinisk farmakologi and Näringsforskning and Institutionen för kirurgisk och perioperativ vetenskap
Nature Genetics, ISSN 1061-4036, 05/2012, Volume 44, Issue 5, pp. 491 - 501
textabstractBone mineral density (BMD) is the most widely used predictor of fracture risk. We performed the largest meta-analysis to date on lumbar spine and... 
WOMEN | POPULATION | IMPUTATION | VARIANTS | DISEASE | GENETICS & HEREDITY | OSTEOPOROTIC FRACTURES | GENE-EXPRESSION | LRP5 | PATTERNS | IMPUTED DATA | Glycoproteins - genetics | Genetic Predisposition to Disease | Genome-Wide Association Study | Low Density Lipoprotein Receptor-Related Protein-5 - genetics | Extracellular Matrix Proteins - genetics | Humans | Risk Factors | Computational Biology | Intercellular Signaling Peptides and Proteins - genetics | European Continental Ancestry Group | Genotype | Male | Bone Density - genetics | Gene Expression Profiling | Phosphoproteins - genetics | Fractures, Bone - genetics | Mitochondrial Membrane Transport Proteins - genetics | Polymorphism, Single Nucleotide - genetics | Female | Femur Neck - physiopathology | Osteoporosis - genetics | Spectrin - genetics | Quantitative Trait Loci | Lumbar Vertebrae - physiopathology | Quantitative trait loci | Measurement | Fractures | Bones | Genetic aspects | Identification and classification | Density | Risk factors | Medical research | Osteoporosis | Genomics | Bone density | Gene loci | Index Medicus | Vèrtebres lumbars | Gens | Femur | Genes | Bone densitometry | Densitometria òssia | Fèmur | Lumbar vertebrae | Basic Medicine | Medical Genetics | Medicinsk genetik | ortopedi | Medical and Health Sciences | Medicin och hälsovetenskap | Medicinska och farmaceutiska grundvetenskaper | genetik | Genetics | Orthopaedics
Journal Article
Neuron, ISSN 0896-6273, 2001, Volume 32, Issue 1, pp. 63 - 77
We report the purification of a presynaptic "particle web" consisting of ∼50 nm pyramidally shaped particles interconnected by ∼100 nm spaced fibrils. This is... 
CENTRAL SYNAPSES | PROTEIN INTERACTIONS | TRANSPORT | NEUROTRANSMITTER RELEASE | SYNAPTIC VESICLE ENDOCYTOSIS | MEMBRANE | ACTIVE ZONES | HIPPOCAMPAL-NEURONS | NEUROSCIENCES | POSTSYNAPTIC DENSITY | N-CADHERIN | Synaptic Vesicles - metabolism | Nerve Tissue Proteins - analysis | Antibodies | Myosin Heavy Chains - immunology | Male | Clathrin - analysis | Presynaptic Terminals - ultrastructure | Munc18 Proteins | Membrane Proteins - analysis | Microscopy, Immunoelectron | Cell Membrane - chemistry | HSP70 Heat-Shock Proteins - analysis | Cadherins - immunology | Neurofilament Proteins - analysis | Synaptic Vesicles - chemistry | GTP Phosphohydrolases - analysis | Synaptosomal-Associated Protein 25 | Cell Membrane - metabolism | Neurofilament Proteins - immunology | Myosin Heavy Chains - analysis | Vesicular Transport Proteins | Synapsins - analysis | Clathrin - immunology | Rabbits | HSP70 Heat-Shock Proteins - immunology | Nerve Tissue Proteins - immunology | Presynaptic Terminals - chemistry | Synaptic Vesicles - ultrastructure | Spectrin - immunology | GTP Phosphohydrolases - immunology | Dynamins | Rats | Cadherins - analysis | Membrane Proteins - immunology | Cell Membrane - ultrastructure | Spectrin - analysis | Animals | Synapsins - immunology | Qa-SNARE Proteins | Presynaptic Terminals - metabolism | Clathrin Heavy Chains | Index Medicus
Journal Article
Molecular and Cellular Proteomics, ISSN 1535-9476, 05/2004, Volume 3, Issue 5, pp. 501 - 509
Journal Article
Development, ISSN 0950-1991, 01/2012, Volume 125, Issue 1, pp. 233 - 245
alpha-catenin associates the cadherin-catenin complex with the actin cytoskeleton. a-catenin binds to beta-catenin, which links it to the cadherin cytoplasmic... 
Oogenesis | Arp2/3 | Head morphogenesis | Drosophila | DE-cadherin:: α-catenin fusion protein | α-catenin | Cadherin | Adherens junction | De-cadherin::α-catenin fusion protein | CADHERIN-BASED ADHESION | ARP2/3 COMPLEX | ACTIN DYNAMICS | BETA-CATENIN | alpha-Catenin | POLARITY GENE ARMADILLO | CELL BIOLOGY | CAENORHABDITIS-ELEGANS | DE-CADHERIN | EPITHELIAL MORPHOGENESIS | TUMOR-SUPPRESSOR | CELL-CELL ADHESION | DE-cadherin::alpha-Catenin fusion protein | Embryo, Nonmammalian - cytology | Cadherins - metabolism | alpha Catenin - metabolism | Embryo, Nonmammalian - metabolism | Zygote - metabolism | Actin-Related Protein 2-3 Complex - genetics | Embryo, Nonmammalian - embryology | Male | Armadillo Domain Proteins - genetics | Drosophila Proteins - metabolism | Drosophila melanogaster - genetics | Adherens Junctions - metabolism | Drosophila melanogaster - metabolism | Actin-Related Protein 2-3 Complex - metabolism | Gene Deletion | Larva - growth & development | Female | Spectrin - metabolism | Ovarian Follicle - cytology | Ovarian Follicle - metabolism | Adherens Junctions - genetics | Drosophila melanogaster - cytology | Embryonic Development - genetics | Head - growth & development | Transcription Factors - genetics | Oogenesis - genetics | Transcription Factors - metabolism | Phenotype | alpha Catenin - deficiency | Animals | Mutagenesis | Armadillo Domain Proteins - metabolism | Imaginal Discs - metabolism | Drosophila melanogaster - growth & development | alpha Catenin - genetics | Drosophila Proteins - genetics | Index Medicus
Journal Article
Proceedings of the National Academy of Sciences of the United States of America, ISSN 0027-8424, 2/2006, Volume 103, Issue 8, pp. 2920 - 2925
The axon initial segment (AIS) of pyramidal cells is a critical region for the generation of action potentials and for the control of pyramidal cell activity.... 
Molecules | Action potentials | Neuroscience | Pyramidal cells | Neurons | Innervation | Antibodies | Ankyrins | Ion channels | Chandeliers | Neocortex | Interneurons | Inhibition | MOLECULAR-ORGANIZATION | POTASSIUM CHANNELS | SODIUM-CHANNELS | MULTIDISCIPLINARY SCIENCES | inhibition | neocortex | ACTION-POTENTIAL INITIATION | ADHESION MOLECULES | JUXTAPARANODAL REGIONS | MYELINATED AXONS | NETWORK OSCILLATIONS | BETA-IV-SPECTRIN | K+ CHANNELS | interneurons | Pyramidal Cells - metabolism | Humans | Middle Aged | Nerve Tissue Proteins - analysis | Sodium Channels - analysis | Cerebral Cortex - cytology | Cerebral Cortex - metabolism | Membrane Proteins - analysis | Ankyrins - analysis | Potassium Channels, Voltage-Gated - metabolism | GABA Plasma Membrane Transport Proteins - metabolism | Pyramidal Cells - chemistry | Ranvier's Nodes - chemistry | Sodium Channels - metabolism | Adult | GABA Plasma Membrane Transport Proteins - analysis | Membrane Proteins - metabolism | Spectrin - metabolism | Potassium Channels, Voltage-Gated - analysis | Presynaptic Terminals - chemistry | Cells, Cultured | Axons - metabolism | Axons - chemistry | Spectrin - analysis | Kv1.2 Potassium Channel - analysis | Nerve Tissue Proteins - metabolism | Kv1.2 Potassium Channel - metabolism | Ankyrins - metabolism | Axonal transport | Neurosciences | Research | Proteins | Ions | Cells | Index Medicus | Biological Sciences
Journal Article
PLoS Pathogens, ISSN 1553-7366, 08/2017, Volume 13, Issue 8, pp. e1006552 - e1006552
Journal Article
Journal Article
Antioxidants and Redox Signaling, ISSN 1523-0864, 2019, Volume 30, Issue 12, pp. 1503 - 1520
Aims: Pyroptotic cells are characterized by plasma swelling, membrane blebbing, and disintegration of the cell membrane mediated by spectrin-based membrane... 
pyroptosis | spectrin | vector | microtubules | microfilaments | cytoskeletal structural tension | CELLS | ACTIVATION | PROTEIN | MEMBRANE | STABILIZATION | BIOCHEMISTRY & MOLECULAR BIOLOGY | PORE FORMATION | CHANNEL | ENDOCRINOLOGY & METABOLISM | LEADS | GASDERMIN-D | INSIGHTS
Journal Article