Activation of Rho GTPases in Smith-Lemli-Opitz syndrome: pathophysiological and clinical implications.
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A. Yergey | P. Backlund | F. Porter | C. Wassif | L. Holtzclaw | Zheng Li | Xiao-Sheng Jiang | Li Song
[1] G. Gallo,et al. Myosin‐II negatively regulates minor process extension and the temporal development of neuronal polarity , 2009, Developmental neurobiology.
[2] R. Shamburek,et al. Characterization of placental cholesterol transport: ABCA1 is a potential target for in utero therapy of Smith-Lemli-Opitz syndrome. , 2008, Human molecular genetics.
[3] F. Collins,et al. A farnesyltransferase inhibitor prevents both the onset and late progression of cardiovascular disease in a progeria mouse model , 2008, Proceedings of the National Academy of Sciences.
[4] F. Porter. Smith–Lemli–Opitz syndrome: pathogenesis, diagnosis and management , 2008, European Journal of Human Genetics.
[5] T. Yamashita,et al. Myosin IIA is required for neurite outgrowth inhibition produced by repulsive guidance molecule , 2008, Journal of neurochemistry.
[6] Michalis V. Karamouzis,et al. Post-translational modifications and regulation of the RAS superfamily of GTPases as anticancer targets , 2007, Nature Reviews Drug Discovery.
[7] A. Chattopadhyay,et al. Differential effects of cholesterol and 7-dehydrocholesterol on the ligand binding activity of the hippocampal serotonin(1A) receptor: implications in SLOS. , 2007, Biochemical and biophysical research communications.
[8] R. Scott,et al. LIM kinases: function, regulation and association with human disease , 2007, Journal of Molecular Medicine.
[9] D. Illingworth,et al. Increased nonsterol isoprenoids, dolichol and ubiquinone, in the Smith-Lemli-Opitz syndrome: effects of dietary cholesterol Published, JLR Papers in Press, September 18, 2006. , 2006, Journal of Lipid Research.
[10] Megha,et al. Cholesterol Precursors Stabilize Ordinary and Ceramide-rich Ordered Lipid Domains (Lipid Rafts) to Different Degrees , 2006, Journal of Biological Chemistry.
[11] R. Steiner,et al. The near universal presence of autism spectrum disorders in children with Smith–Lemli–Opitz syndrome , 2006, American journal of medical genetics. Part A.
[12] Hongwei Yu,et al. The use of the Dhcr7 knockout mouse to accurately determine the origin of fetal sterols Published, JLR Papers in Press, May 1, 2006. , 2006, Journal of Lipid Research.
[13] J. Rivera,et al. Cholesterol deficiency in a mouse model of Smith-Lemli-Opitz syndrome reveals increased mast cell responsiveness , 2006, The Journal of experimental medicine.
[14] Y. Loh,et al. Abnormal sterols in cholesterol-deficiency diseases cause secretory granule malformation and decreased membrane curvature , 2006, Journal of Cell Science.
[15] Stephen G Young,et al. A Protein Farnesyltransferase Inhibitor Ameliorates Disease in a Mouse Model of Progeria , 2006, Science.
[16] A. Grinberg,et al. Development and characterization of a hypomorphic Smith-Lemli-Opitz syndrome mouse model and efficacy of simvastatin therapy. , 2006, Human molecular genetics.
[17] R. Steiner,et al. A membrane defect in the pathogenesis of the Smith-Lemli-Opitz syndrome Published, JLR Papers in Press, October 28, 2005. , 2006, Journal of Lipid Research.
[18] R. Zeng,et al. Two‐dimensional gel electrophoresis maps of the proteome and phosphoproteome of primitively cultured rat mesangial cells , 2005, Electrophoresis.
[19] H. Yu,et al. Recent insights into the Smith–Lemli–Opitz syndrome , 2005, Clinical genetics.
[20] L. Van Aelst,et al. Rho GTPases, dendritic structure, and mental retardation. , 2005, Journal of neurobiology.
[21] F. Porter,et al. 3β-Hydroxysterol Δ7-reductase and the Smith–Lemli–Opitz syndrome , 2005 .
[22] Yasunori Hayashi,et al. The Importance of Dendritic Mitochondria in the Morphogenesis and Plasticity of Spines and Synapses , 2004, Cell.
[23] S. Fliesler,et al. Formation of 7-dehydrocholesterol-containing membrane rafts in vitro and in vivo, with relevance to the Smith-Lemli-Opitz syndrome Published, JLR Papers in Press, November 1, 2003. DOI 10.1194/jlr.M300232-JLR200 , 2004, Journal of Lipid Research.
[24] R. Beavis,et al. A method for reducing the time required to match protein sequences with tandem mass spectra. , 2003, Rapid communications in mass spectrometry : RCM.
[25] R. Aebersold,et al. A statistical model for identifying proteins by tandem mass spectrometry. , 2003, Analytical chemistry.
[26] K. Zerres,et al. Oligophrenin 1 (OPHN1) gene mutation causes syndromic X-linked mental retardation with epilepsy, rostral ventricular enlargement and cerebellar hypoplasia. , 2003, Brain : a journal of neurology.
[27] A. Hunter,et al. Lathosterolosis: an inborn error of human and murine cholesterol synthesis due to lathosterol 5-desaturase deficiency. , 2003, Human molecular genetics.
[28] N. Philip,et al. Mutations in the oligophrenin-1 gene (OPHN1) cause X linked congenital cerebellar hypoplasia , 2003, Journal of medical genetics.
[29] Alexey I Nesvizhskii,et al. Empirical statistical model to estimate the accuracy of peptide identifications made by MS/MS and database search. , 2002, Analytical chemistry.
[30] J. Macdonald,et al. Abnormal Spine Morphology and Enhanced LTP in LIMK-1 Knockout Mice , 2002, Neuron.
[31] N. Maeda,et al. 7-Dehydrocholesterol-dependent proteolysis of HMG-CoA reductase suppresses sterol biosynthesis in a mouse model of Smith-Lemli-Opitz/RSH syndrome. , 2001, The Journal of clinical investigation.
[32] J. Goergen,et al. The collagen receptor DDR2 regulates proliferation and its elimination leads to dwarfism , 2001, EMBO reports.
[33] F. F. Weight,et al. Biochemical, phenotypic and neurophysiological characterization of a genetic mouse model of RSH/Smith--Lemli--Opitz syndrome. , 2001, Human molecular genetics.
[34] A. Hall,et al. Rac/Cdc42 and p65PAK Regulate the Microtubule-destabilizing Protein Stathmin through Phosphorylation at Serine 16* , 2001, The Journal of Biological Chemistry.
[35] L. Freund,et al. Behavior phenotype in the RSH/Smith-Lemli-Opitz syndrome. , 2001, American journal of medical genetics.
[36] L. Luo. RHO GTPASES in neuronal morphogenesis , 2000, Nature Reviews Neuroscience.
[37] G. Neri,et al. Two novel mutations confirm FGD1 is responsible for the Aarskog syndrome , 2000, European Journal of Human Genetics.
[38] H. Ropers,et al. Mutations in ARHGEF6, encoding a guanine nucleotide exchange factor for Rho GTPases, in patients with X-linked mental retardation , 2000, Nature Genetics.
[39] H. Cline,et al. Rho GTPases regulate distinct aspects of dendritic arbor growth in Xenopus central neurons in vivo , 2000, Nature Neuroscience.
[40] D. N. Perkins,et al. Probability‐based protein identification by searching sequence databases using mass spectrometry data , 1999, Electrophoresis.
[41] C. Walsh,et al. PAK3 mutation in nonsyndromic X-linked mental retardation , 1998, Nature Genetics.
[42] P. Vreken,et al. Smith-Lemli-Opitz syndrome is caused by mutations in the 7-dehydrocholesterol reductase gene. , 1998, American journal of human genetics.
[43] G. Utermann,et al. Mutations in the Delta7-sterol reductase gene in patients with the Smith-Lemli-Opitz syndrome. , 1998, Proceedings of the National Academy of Sciences of the United States of America.
[44] D. S. Lin,et al. Mutations in the human sterol delta7-reductase gene at 11q12-13 cause Smith-Lemli-Opitz syndrome. , 1998, American journal of human genetics.
[45] P. Beachy,et al. Cholesterol Modification of Hedgehog Signaling Proteins in Animal Development , 1996, Science.
[46] M. Tassabehji,et al. LIM–kinase deleted in Williams syndrome , 1996, Nature Genetics.
[47] R. Stevenson,et al. Isolation and characterization of the faciogenital dysplasia (Aarskog-Scott syndrome) gene: A putative Rho Rac guanine nucleotide exchange factor , 1994, Cell.
[48] D. Linseman,et al. Diverse roles of Rho family GTPases in neuronal development, survival, and death. , 2008, Frontiers in bioscience : a journal and virtual library.
[49] O. Bernard. Lim kinases, regulators of actin dynamics. , 2007, The international journal of biochemistry & cell biology.
[50] G. Ramakers,et al. Rho proteins, mental retardation and the neurobiological basis of intelligence. , 2005, Progress in brain research.
[51] F. Porter,et al. 3beta-hydroxysterol Delta7-reductase and the Smith-Lemli-Opitz syndrome. , 2005, Molecular genetics and metabolism.
[52] J. Bamburg,et al. Regulation of the neuronal actin cytoskeleton by ADF/cofilin. , 2004, Journal of neurobiology.
[53] B. Lu,et al. Lipid Rafts Mediate Chemotropic Guidance of Nerve Growth Cones , 2004, Neuron.