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Peroxisomal Disorders and Regulation of Genes

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Cover of 'Peroxisomal Disorders and Regulation of Genes'

Table of Contents

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    Book Overview
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    Chapter 1 Why Study Regulation of Genes in Inherited Disorders?
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    Chapter 2 Phenotypic variability (heterogeneity) of peroxisomal disorders.
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    Chapter 3 Mulibrey Nanism - a Novel Peroxisomal Disorder
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    Chapter 4 Peroxisomes during Development and in Distinct Cell Types
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    Chapter 5 Tissue-specific Expression of Two Peroxisomal 3-ketoacyl-CoA Thiolase Genes in Wild and PPARα-null Mice and Induction by Fenofibrate
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    Chapter 6 Clinical Features & Retinal Function In Patients With Adult Refsum Syndrome
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    Chapter 7 Is there a Phenotype/Genotype Correlation in Peroxisome Biogenesis Disorders (PBDs)?
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    Chapter 8 Biochemical Markers Predicting Survival in Peroxisome Biogenesis Disorders
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    Chapter 9 Identification of PEX7 as the second gene involved in Refsum disease.
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    Chapter 10 Genetic heterogeneity in Japanese patients with peroxisome biogenesis disorders and evidence for a founder haplotype for the most common mutation in PEX10 gene.
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    Chapter 11 Disturbances of Valine Metabolism in Patients with Peroxisomal Biogenesis Disorders
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    Chapter 12 Mouse Models and Genetic Modifiers in X-Linked Adrenoleukodystrophy
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    Chapter 13 Evidence against the Adrenoleukodystrophy-related Gene acting as a Modifier of X-adrenoleukodystrophy
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    Chapter 14 Peroxisome Mosaics
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    Chapter 15 Resolution of the Molecular Defect in a Patient with Peroxisomal Mosaicism in the Liver
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    Chapter 16 Lessons from Knockout Mice. I: Phenotypes of Mice with Peroxisome Biogenesis Disorders
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    Chapter 17 Lessons from Knockout Mice II: Mouse Models for Peroxisomal Disorders with Single Protein Deficiency
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    Chapter 18 DNA Methylation and Human Diseases
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    Chapter 19 RNA Silencing
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    Chapter 20 Imprinting
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    Chapter 21 Histone Modifications-Marks for Gene Expression?
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    Chapter 22 A Paradigm for Gene Regulation: Inflammation, NF-κB and PPAR
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    Chapter 23 Methods: DNA methylation.
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    Chapter 24 RNA interference in mammalian systems--a practical approach.
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    Chapter 25 Histone Modifications:Methods and Techniques
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    Chapter 26 Characterization of the Peroxisomal Cycling Receptor Pex5p Import Pathway
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    Chapter 27 Interaction of PEX3 and PEX19 visualized by fluorescence resonance energy transfer (FRET).
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    Chapter 28 Gene Regulation of Peroxisomal Enzymes by Nutrients, Hormones and Nuclear Signalling Factors in Animal and Human Species
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    Chapter 29 Regulation of Peroxisomal Genes by DHEA and Vitamin D
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    Chapter 30 Effect of Dehydroepiandrosterone (DHEA) Supplementation on Fatty Acid and Hormone Levels in Patients with X-linked Adrenoleukodystrophy
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    Chapter 31 Dehydroepiandrosterone Induction of the Abcd2 and Abcd3 Genes encoding peroxisomal ABC Transporters
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    Chapter 32 Phytanic and pristanic acid are naturally occuring ligands.
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    Chapter 33 Modified Peroxisomes in Primary Hepatocyte Cultures
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    Chapter 34 Modifying the Peroxisomes by Cell & Tissue Culture
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    Chapter 35 Peroxisomes and PPARs in Cultured Neural Cells
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    Chapter 36 Pharmacological Induction of Redundant Genes for a Therapy of X-ALD
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    Chapter 37 Peroxisomal Fatty Acid Alpha-and Beta-Oxidation in Health and Disease: New insights
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    Chapter 38 Role of phytanoyl-CoA 2-hydroxylase in phytanic acid metabolism.
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    Chapter 39 Thiamine Pyrophosphate: an essential Cofactor in the Mammalian Metabolism of 3-methyl-branched Fatty Acids
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    Chapter 40 Metabolic Regulation of Peroxisomal and Mitochondrial Fatty Acid Oxidation
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    Chapter 41 Cholesterol Biosynthesis and Regulation: Role of Peroxisomes
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    Chapter 42 Peroxisome Deficiency Does Not Result in Deficiency of Enzymes involved in Cholesterol Biosynthesis
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    Chapter 43 Cholesterol regulates ABCD2 Gene Expression: implications for X-linked Adrenoleukodstrophy
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    Chapter 44 Regulation of Farnesyl Diphosphate Synthase Gene Expression by Fatty Acids
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    Chapter 45 Plasmalogens, Docosahexaenoic Acid and Neurological Disorders
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    Chapter 46 Targeted Disruption Of Ether Lipid Synthesis In Mice
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    Chapter 47 Evaluation of the Preventive Effect of Glyceryl Trioleate-Trierucate (“Lorenzo’s Oil”) Therapy in X-Linked Adrenoleukodystrophy: Results of Two Concurrent Trials
Attention for Chapter 2: Phenotypic variability (heterogeneity) of peroxisomal disorders.
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Chapter title
Phenotypic variability (heterogeneity) of peroxisomal disorders.
Chapter number 2
Book title
Peroxisomal Disorders and Regulation of Genes
Published in
Advances in experimental medicine and biology, January 2004
DOI 10.1007/978-1-4419-9072-3_2
Pubmed ID
Book ISBNs
978-1-4613-4782-8, 978-1-4419-9072-3
Authors

Mandel H, Korman SH, Hanna Mandel, Stanley H. Korman, Mandel, Hanna, Korman, Stanley H.

Abstract

Peroxisomes perform a multitude of biosynthetic and catabolic functions, many of which are related to lipid metabolism. Peroxisomal disorders result either from deficiency of a single peroxisomal enzyme or protein, or from a defect in the complex mechanism of peroxisomal biogenesis, resulting in deficiency of several or multiple peroxisomal functions. These can be assessed by a battery of biochemical assays, enabling a biochemical phenotype to be defined that is specific and diagnostic for each of the peroxisomal disorders. Some peroxisomal disorders have unique and specific clinical phenotypes, which may be diagnostic. Others share patterns of clinical abnormalities (particularly neurological dysfunction, craniofacial dysmorphism, skeletal defects, sensory deafness, retinopathy) consistent with defined clinical phenotypes, but with considerable overlap and heterogeneity. To a certain extent, the clinical features of a particular disorder reflect the accumulation or deficiency of specific metabolites. Thus, the same clinical phenotypes may be caused by both single enzyme defects and PBDs. Furthermore, the same defect may present with different clinical phenotypes. In general, the severity of the clinical phenotype correlates with the degree of biochemical dysfunction. The clinical heterogeneity of peroxisomal disorders constitutes a diagnostic challenge demanding a high index of suspicion on the clinician's part.

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Mendeley readers

The data shown below were compiled from readership statistics for 11 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 11 100%

Demographic breakdown

Readers by professional status Count As %
Other 2 18%
Researcher 2 18%
Student > Ph. D. Student 2 18%
Student > Bachelor 1 9%
Professor 1 9%
Other 0 0%
Unknown 3 27%
Readers by discipline Count As %
Neuroscience 3 27%
Medicine and Dentistry 2 18%
Chemistry 1 9%
Biochemistry, Genetics and Molecular Biology 1 9%
Unknown 4 36%