Taylor RW. Neuropathologic Characterization of Pontocerebellar Hypoplasia Type 6 Associated With Cardiomyopathy and Hydrops Fetalis and Severe Multisystem Respiratory Chain Deficiency due to Novel RARS2
暂无分享,去创建一个
Robert W. Taylor | N. Lax | Soo-Mi Park | C. Lees | R. King | A. Ogilvy-Stuart | A. Dean | I. Hargreaves | G. Falkous | Garry K. Brown | C. Alston | R. Mcfarland | D. Krishnakumar | K. Schon | Langping He | Robert W. Taylor
[1] Robert W. Taylor,et al. Mutations in GTPBP3 cause a mitochondrial translation defect associated with hypertrophic cardiomyopathy, lactic acidosis, and encephalopathy. , 2014, American journal of human genetics.
[2] R. Hevner,et al. Neuropathologic Features of Pontocerebellar Hypoplasia Type 6 , 2014, Journal of neuropathology and experimental neurology.
[3] S. Züchner,et al. Pure and syndromic optic atrophy explained by deep intronic OPA1 mutations and an intralocus modifier. , 2014, Brain : a journal of neurology.
[4] Beril Talim,et al. Use of whole-exome sequencing to determine the genetic basis of multiple mitochondrial respiratory chain complex deficiencies. , 2014, JAMA.
[5] V. Tiranti,et al. The Mitochondrial Aminoacyl tRNA Synthetases: Genes and Syndromes , 2014, International journal of cell biology.
[6] P. Prabhakar,et al. Subdural effusions and lack of early pontocerebellar hypoplasia in siblings with RARS2 mutations , 2013, Archives of Disease in Childhood.
[7] Robert W. Taylor,et al. Early-onset cataracts, spastic paraparesis, and ataxia caused by a novel mitochondrial tRNAGlu (MT-TE) gene mutation causing severe complex I deficiency: a clinical, molecular, and neuropathologic study. , 2013, Journal of neuropathology and experimental neurology.
[8] E. Bertini,et al. Pontocerebellar hypoplasia type 6 caused by mutations in RARS2: definition of the clinical spectrum and molecular findings in five patients , 2013, Journal of Inherited Metabolic Disease.
[9] B. Faircloth,et al. Primer3—new capabilities and interfaces , 2012, Nucleic acids research.
[10] T. Meitinger,et al. Mutations of the mitochondrial-tRNA modifier MTO1 cause hypertrophic cardiomyopathy and lactic acidosis. , 2012, American journal of human genetics.
[11] D. Saunders,et al. Further delineation of pontocerebellar hypoplasia type 6 due to mutations in the gene encoding mitochondrial arginyl-tRNA synthetase, RARS2 , 2012, Journal of Inherited Metabolic Disease.
[12] Robert W. Taylor,et al. Cerebellar Ataxia in Patients With Mitochondrial DNA Disease: A Molecular Clinicopathological Study , 2012, Journal of neuropathology and experimental neurology.
[13] A. Lombès,et al. Neonatal cardiomyopathies and metabolic crises due to oxidative phosphorylation defects. , 2011, Seminars in fetal & neonatal medicine.
[14] Matej Oresic,et al. Exome sequencing identifies mitochondrial alanyl-tRNA synthetase mutations in infantile mitochondrial cardiomyopathy. , 2011, American journal of human genetics.
[15] M. Kamermans,et al. Impairment of the tRNA-splicing endonuclease subunit 54 (tsen54) gene causes neurological abnormalities and larval death in zebrafish models of pontocerebellar hypoplasia. , 2011, Human molecular genetics.
[16] San-Nan Yang,et al. Perinatal Hypoxic-Ischemic Encephalopathy , 2010, Journal of biomedicine & biotechnology.
[17] W. Dobyns,et al. Pontocerebellar hypoplasia type 6: A British case with PEHO‐like features , 2010, American journal of medical genetics. Part A.
[18] G. Lopaschuk,et al. Energy Metabolic Phenotype of the Cardiomyocyte During Development, Differentiation, and Postnatal Maturation , 2010, Journal of cardiovascular pharmacology.
[19] R. Palmiter,et al. Complex I deficiency due to loss of Ndufs4 in the brain results in progressive encephalopathy resembling Leigh syndrome , 2010, Proceedings of the National Academy of Sciences.
[20] J. Smeitink,et al. Mitochondrial Translation and Beyond: Processes Implicated in Combined Oxidative Phosphorylation Deficiencies , 2010, Journal of biomedicine & biotechnology.
[21] Barbara A Rapp,et al. The informationist: building evidence for an emerging health profession. , 2010, Journal of the Medical Library Association : JMLA.
[22] A. Paetau,et al. Infantile-onset spinocerebellar ataxia and mitochondrial recessive ataxia syndrome are associated with neuronal complex I defect and mtDNA depletion. , 2008, Human molecular genetics.
[23] K. Kagan,et al. A mixture model of nuchal translucency thickness in screening for chromosomal defects , 2008, Ultrasound in obstetrics & gynecology : the official journal of the International Society of Ultrasound in Obstetrics and Gynecology.
[24] J. Gomori,et al. Deleterious mutation in the mitochondrial arginyl-transfer RNA synthetase gene is associated with pontocerebellar hypoplasia. , 2007, American journal of human genetics.
[25] D. Turnbull,et al. Molecular neuropathology of MELAS: level of heteroplasmy in individual neurones and evidence of extensive vascular involvement , 2006, Neuropathology and applied neurobiology.
[26] Richard L Robertson,et al. Late Gestation Cerebellar Growth Is Rapid and Impeded by Premature Birth , 2005, Pediatrics.
[27] D. Thorburn,et al. Minimum birth prevalence of mitochondrial respiratory chain disorders in children. , 2003, Brain : a journal of neurology.
[28] H. Dietz,et al. A strategy for disease gene identification through nonsense-mediated mRNA decay inhibition , 2001, Nature Biotechnology.
[29] J. Larroche,et al. Differential growth between the fetal brain and its infratentorial part. , 1990, Early human development.
[30] Margaret A. Johnson,et al. Methods of microphotometric assay of succinate dehydrogenase and cytochromec oxidase activities for use on human skeletal muscle , 1989, The Histochemical Journal.
[31] F. Baas,et al. Clinical, neuroradiological and genetic findings in pontocerebellar hypoplasia. , 2011, Brain : a journal of neurology.
[32] J. Jansen,et al. The Comparative Anatomy and Histology of the Cerebellum: The Human Cerebellum, Cerebellar Connections, and Cerebellar Cortex , 1972 .