Altered levels of the splicing factor muscleblind modifies cerebral cortical function in mouse models of myotonic dystrophy
暂无分享,去创建一个
Timothy J. Ebner | Gang Chen | Russell E. Carter | Maurice S. Swanson | T. Ebner | M. Swanson | J. Cleary | L. Ranum | Gang Chen | Tammy Reid | John D. Cleary | Tammy S. Reid | Laura P. Ranum | R. Carter
[1] Russell E. Carter,et al. Abnormal Excitability and Episodic Low-Frequency Oscillations in the Cerebral Cortex of the tottering Mouse , 2015, The Journal of Neuroscience.
[2] J. Klein,et al. Human Motor Corpus Callosum: Topography, Somatotopy, and Link between Microstructure and Function , 2007, The Journal of Neuroscience.
[3] Rony Azouz,et al. Time-dependent, layer-specific modulation of sensory responses mediated by neocortical layer 1. , 2006, Journal of neurophysiology.
[4] E. Maguire,et al. What does the retrosplenial cortex do? , 2009, Nature Reviews Neuroscience.
[5] C. Caltagirone,et al. Abnormal functional brain connectivity and personality traits in myotonic dystrophy type 1. , 2014, JAMA neurology.
[6] F. Metzger,et al. Myotonic dystrophy CTG expansion affects synaptic vesicle proteins, neurotransmission and mouse behaviour. , 2013, Brain : a journal of neurology.
[7] B. Chance,et al. Optical method. , 1991, Annual review of biophysics and biophysical chemistry.
[8] D. Godwin,et al. Metabotropic glutamate receptors as a strategic target for the treatment of epilepsy , 2006, Epilepsy Research.
[9] M. Swanson,et al. Muscleblind-like 1 interacts with RNA hairpins in splicing target and pathogenic RNAs , 2007, Nucleic acids research.
[10] M. Tittgemeyer,et al. The brain in myotonic dystrophy 1 and 2: evidence for a predominant white matter disease , 2011, Brain : a journal of neurology.
[11] K. Shibuki,et al. Transcranial electrical stimulation of cortico-cortical connections in anesthetized mice , 2011, Journal of Neuroscience Methods.
[12] Katsuei Shibuki,et al. Dynamic Imaging of Somatosensory Cortical activity in the Rat Visualized by Flavoprotein Autofluorescence , 2003, The Journal of physiology.
[13] J. D. Macklis,et al. Large‐scale maintenance of dual projections by callosal and frontal cortical projection neurons in adult mice , 2005, The Journal of comparative neurology.
[14] L. Ranum,et al. Mouse model of muscleblind-like 1 overexpression: skeletal muscle effects and therapeutic promise. , 2012, Human molecular genetics.
[15] W. Hauswirth,et al. A Muscleblind Knockout Model for Myotonic Dystrophy , 2003, Science.
[16] Gang Chen,et al. Reevaluation of the Beam and Radial Hypotheses of Parallel Fiber Action in the Cerebellar Cortex , 2013, The Journal of Neuroscience.
[17] David E. Housman,et al. Molecular basis of myotonic dystrophy: Expansion of a trinucleotide (CTG) repeat at the 3′ end of a transcript encoding a protein kinase family member , 1992, Cell.
[18] T. Cooper,et al. Pathogenic mechanisms of myotonic dystrophy. , 2009, Biochemical Society transactions.
[19] H. Mutoh,et al. Functional topology of the mossy fibre–granule cell– Purkinje cell system revealed by imaging of intrinsic fluorescence in mouse cerebellum , 2004, The European journal of neuroscience.
[20] D. Worku. Concurrence of myotonic dystrophy and epilepsy: a case report , 2014, Journal of Medical Case Reports.
[21] G. Meola,et al. Muscleblind-like protein 1 nuclear sequestration is a molecular pathology marker of DM1 and DM2. , 2006, European journal of histochemistry : EJH.
[22] George Paxinos,et al. The Mouse Brain in Stereotaxic Coordinates , 2001 .
[23] Gang Chen,et al. Flavoprotein autofluorescence imaging in the cerebellar cortex in vivo , 2007, Journal of neuroscience research.
[24] C. Mainero,et al. Cerebral atrophy in myotonic dystrophy: a voxel based morphometric study , 2004, Journal of Neurology, Neurosurgery & Psychiatry.
[25] P. McKenna,et al. Mild myotonic dystrophy is associated with memory impairment in the context of normal general intelligence. , 1997, Journal of medical genetics.
[26] D. Attwell,et al. Glial and neuronal control of brain blood flow , 2022 .
[27] G. Yang,et al. Activation of cerebellar climbing fibers increases cerebellar blood flow: role of glutamate receptors, nitric oxide, and cGMP. , 1998, Stroke.
[28] A. Maffei,et al. Laminar- and Target-Specific Amygdalar Inputs in Rat Primary Gustatory Cortex , 2016, The Journal of Neuroscience.
[29] R. Yuste,et al. Dense Inhibitory Connectivity in Neocortex , 2011, Neuron.
[30] K. Ito,et al. Diffusion tensor imaging of cerebral white matter in patients with myotonic dystrophy , 2005, Acta radiologica.
[31] Tyson A. Clark,et al. Aberrant alternative splicing and extracellular matrix gene expression in mouse models of myotonic dystrophy , 2010, Nature Structural &Molecular Biology.
[32] A. Munnich,et al. CTG Trinucleotide Repeat “Big Jumps”: Large Expansions, Small Mice , 2007, PLoS genetics.
[33] E. Ellis,et al. Dilation of cerebral arterioles by cytochrome P-450 metabolites of arachidonic acid. , 1990, The American journal of physiology.
[34] A. Barkovich,et al. Variability of Homotopic and Heterotopic Callosal Connectivity in Partial Agenesis of the Corpus Callosum: A 3T Diffusion Tensor Imaging and Q-Ball Tractography Study , 2008, American Journal of Neuroradiology.
[35] Katsuei Shibuki,et al. Roles of nitric oxide as a vasodilator in neurovascular coupling of mouse somatosensory cortex , 2007, Neuroscience Research.
[36] A James Barkovich,et al. Clinical, genetic and imaging findings identify new causes for corpus callosum development syndromes. , 2014, Brain : a journal of neurology.
[37] Ad Aertsen,et al. Functional consequences of correlated excitatory and inhibitory conductances in cortical networks , 2010, Journal of Computational Neuroscience.
[38] Yoshitsugu Aoki,et al. Relationship between diffusion tensor imaging and brain morphology in patients with myotonic dystrophy , 2006, Neuroscience Letters.
[39] S. Naylor,et al. Myotonic Dystrophy Type 2 Caused by a CCTG Expansion in Intron 1 of ZNF9 , 2001, Science.
[40] C. Marra,et al. Characterization of the pattern of cognitive impairment in myotonic dystrophy type 1. , 2004, Archives of neurology.
[41] J R Huguenard,et al. Properties of excitatory synaptic connections mediated by the corpus callosum in the developing rat neocortex. , 2001, Journal of neurophysiology.
[42] K. E. Novak,et al. Kinematic properties of rapid hand movements in a knob turning task , 2000, Experimental Brain Research.
[43] B. Mueller,et al. Cerebral and muscle MRI abnormalities in myotonic dystrophy , 2012, Neuromuscular Disorders.
[44] N. Cook,et al. Homotopic callosal inhibition , 1984, Brain and Language.
[45] D. Perani,et al. Executive dysfunction and avoidant personality trait in myotonic dystrophy type 1 (DM-1) and in proximal myotonic myopathy (PROMM/DM-2) , 2003, Neuromuscular Disorders.
[46] F. Gabreëls,et al. Cognitive function in early adult and adult onset myotonic dystrophy , 1995, Acta neurologica Scandinavica.
[47] G. Hynd,et al. The Role of the Corpus Callosum in Interhemispheric Transfer of Information: Excitation or Inhibition? , 2005, Neuropsychology Review.
[48] A. Grinvald,et al. Imaging Spatiotemporal Dynamics of Surround Inhibition in the Barrels Somatosensory Cortex , 2003, The Journal of Neuroscience.
[49] B. Peterson,et al. Functional significance of individual variations in callosal area , 1995, Neuropsychologia.
[50] Ying Ma,et al. Wide-field optical mapping of neural activity and brain haemodynamics: considerations and novel approaches , 2016, Philosophical Transactions of the Royal Society B: Biological Sciences.
[51] B. Sakmann,et al. Neuronal correlates of local, lateral, and translaminar inhibition with reference to cortical columns. , 2009, Cerebral cortex.
[52] M. Ares,et al. Muscleblind-Like 1 Knockout Mice Reveal Novel Splicing Defects in the Myotonic Dystrophy Brain , 2012, PloS one.
[53] A Keller,et al. Intrinsic synaptic organization of the motor cortex. , 1993, Cerebral cortex.
[54] R. Adolphs,et al. Agenesis of the corpus callosum: genetic, developmental and functional aspects of connectivity , 2007, Nature Reviews Neuroscience.
[55] C. Caltagirone,et al. Brain Connectomics' Modification to Clarify Motor and Nonmotor Features of Myotonic Dystrophy Type 1 , 2016, Neural plasticity.
[56] C. Amemiya,et al. Myotonic dystrophy mutation: an unstable CTG repeat in the 3' untranslated region of the gene. , 1992, Science.
[57] Gang Chen,et al. Cerebellar Cortical Molecular Layer Inhibition Is Organized in Parasagittal Zones , 2006, The Journal of Neuroscience.
[58] K. Nagao,et al. Neuronal loss in the medullary reticular formation in myotonic dystrophy , 1996, Neurology.
[59] Alexandra Chovsepian,et al. Heterotopic Transcallosal Projections Are Present throughout the Mouse Cortex , 2017, Front. Cell. Neurosci..
[60] T. Ashizawa,et al. An unstable triplet repeat in a gene related to myotonic muscular dystrophy. , 1992, Science.
[61] A Grinvald,et al. Optical imaging of cortical activity: real-time imaging using extrinsic dye-signals and high resolution imaging based on slow intrinsic-signals. , 1989, Annual review of physiology.
[62] Laura R. Fenlon,et al. Contralateral targeting of the corpus callosum in normal and pathological brain function , 2015, Trends in Neurosciences.
[63] M. Lauritzen,et al. Nonlinear Neurovascular Coupling in Rat Sensory Cortex by Activation of Transcallosal Fibers , 2007, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.
[64] Hollis G. Potter,et al. Author Manuscript , 2013 .
[65] H. Lerche,et al. Quantification of brain atrophy in patients with myotonic dystrophy and proximal myotonic myopathy: a controlled 3-dimensional magnetic resonance imaging study , 2003, Neuroscience Letters.
[66] B. Mueller,et al. White matter abnormalities and neurocognitive correlates in children and adolescents with myotonic dystrophy type 1: A diffusion tensor imaging study , 2011, Neuromuscular Disorders.
[67] E. Nanba,et al. [Myotonic dystrophy]. , 2005, Nihon rinsho. Japanese journal of clinical medicine.
[68] T. Cooper,et al. Reexpression of pyruvate kinase M2 in type 1 myofibers correlates with altered glucose metabolism in myotonic dystrophy , 2013, Proceedings of the National Academy of Sciences.
[69] T. Dóczi,et al. Isolated Human and Rat Cerebral Arteries Constrict to Increases in Flow: Role of 20-HETE and TP Receptors , 2011, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.
[70] Timothy J. Ebner,et al. Cellular and Metabolic Origins of Flavoprotein Autofluorescence in the Cerebellar Cortex in vivo , 2011, The Cerebellum.
[71] Richard J. Edwards,et al. Metabotropic Glutamate Receptors , 2015, The Journal of Biological Chemistry.
[72] B. Leplow,et al. Subtle cognitive dysfunction in adult onset myotonic dystrophy type 1 (DM1) and type 2 (DM2) , 2006, Neurology.
[73] J. Connor,et al. NAD(P)H Fluorescence Transients after Synaptic Activity in Brain Slices: Predominant Role of Mitochondrial Function , 2006, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.
[74] D. Perani,et al. Reduced cerebral blood flow and impaired visual–spatial function in proximal myotonic myopathy , 1999, Neurology.
[75] Gang Chen,et al. Flavoprotein autofluorescence imaging of neuronal activation in the cerebellar cortex in vivo. , 2004, Journal of neurophysiology.
[76] Mariel G Kozberg,et al. Rapid Postnatal Expansion of Neural Networks Occurs in an Environment of Altered Neurovascular and Neurometabolic Coupling , 2016, The Journal of Neuroscience.
[77] Gang Chen,et al. Parasagittally aligned, mGluR1-dependent patches are evoked at long latencies by parallel fiber stimulation in the mouse cerebellar cortex in vivo. , 2011, Journal of neurophysiology.
[78] M. Michaelis,et al. Selective dendrite-targeting of mRNAs of NR1 splice variants without exon 5: identification of a cis-acting sequence and isolation of sequence-binding proteins , 2003, Brain Research.
[79] P. Goldman-Rakic,et al. Prefrontal Microcircuits: Membrane Properties and Excitatory Input of Local, Medium, and Wide Arbor Interneurons , 2001, The Journal of Neuroscience.
[80] Naoum P Issa,et al. Functional Imaging of Primary Visual Cortex Using Flavoprotein Autofluorescence , 2007, The Journal of Neuroscience.
[81] M. Ares,et al. Muscleblind-like 2-Mediated Alternative Splicing in the Developing Brain and Dysregulation in Myotonic Dystrophy , 2012, Neuron.
[82] Beatriz Llamusí,et al. Derepressing muscleblind expression by miRNA sponges ameliorates myotonic dystrophy-like phenotypes in Drosophila , 2016, Scientific Reports.
[83] M. Scanziani,et al. How Inhibition Shapes Cortical Activity , 2011, Neuron.
[84] B. Vogt,et al. Form and distribution of neurons in rat cingulate cortex: Areas 32, 24, and 29 , 1981, The Journal of comparative neurology.