Different entities of proximal spinal muscular atrophy within one family. 1997

B Wirth, and D Tessarolo, and E Hahnen, and S Rudnik-Schöneborn, and H Raschke, and M Liguori, and M Giacanelli, and K Zerres
Institute of Human Genetics, Bonn, Germany. bwirth@uni-bonn.de

The molecular analysis of the survival motor neuron (SMN) gene and several closely flanking polymorphic markers in an atypical pedigree with four patients suffering from spinal muscular atrophy (SMA) over two generations has raised new aspects concerning the etiology and the molecular spectrum of autosomal recessive SMA. Three patients in two generations show homozygous deletions of exons 7 and 8 of the telomeric copy of SMN (telSMN), thus confirming the presence of autosomal recessive SMA, with localisation on chromosome 5q12. The fourth SMA patient with mild neurogenic atrophy (confirmed by muscle biopsy and electromyography) shows no homozygous deletion of telSMN but carries a heterozygous deletion of telSMN, as can be deduced from her two affected homozygously deleted children. No intragenic mutation has been identified in the remaining telSMN. In addition, she shares only one SMA chromosome with her affected brother, is haploidentical with two healthy brothers, and has a 31-year-old healthy son, who has inherited an SMN-deleted paternal chromosome and the SMN non-deleted maternal chromosome. These results suggest that this patient either has a neurogenic atrophy of a different origin or exhibits an unusual heterozygous manifestation of SMA 5q12. Interestingly, the two haploidentical telSMN-deleted affected sibs in the second generation show a strikingly discordant clinical picture indicating that, in addition to telSMN mutations, other factors influence the phenotype of SMA in the reported pedigree.

UI MeSH Term Description Entries
D008040 Genetic Linkage The co-inheritance of two or more non-allelic GENES due to their being located more or less closely on the same CHROMOSOME. Genetic Linkage Analysis,Linkage, Genetic,Analyses, Genetic Linkage,Analysis, Genetic Linkage,Genetic Linkage Analyses,Linkage Analyses, Genetic,Linkage Analysis, Genetic
D008297 Male Males
D008875 Middle Aged An adult aged 45 - 64 years. Middle Age
D009134 Muscular Atrophy, Spinal A group of disorders marked by progressive degeneration of motor neurons in the spinal cord resulting in weakness and muscular atrophy, usually without evidence of injury to the corticospinal tracts. Diseases in this category include Werdnig-Hoffmann disease and later onset SPINAL MUSCULAR ATROPHIES OF CHILDHOOD, most of which are hereditary. (Adams et al., Principles of Neurology, 6th ed, p1089) Bulbospinal Neuronopathy,Oculopharyngeal Spinal Muscular Atrophy,Progressive Muscular Atrophy,Scapuloperoneal Form of Spinal Muscular Atrophy,Spinal Muscular Atrophy,Adult Spinal Muscular Atrophy,Adult-Onset Spinal Muscular Atrophy,Amyotrophy, Neurogenic Scapuloperoneal, New England Type,Distal Spinal Muscular Atrophy,Hereditary Motor Neuronopathy,Muscular Atrophy, Adult Spinal,Myelopathic Muscular Atrophy,Myelopathic Muscular Atrophy, Progressive,Progressive Myelopathic Muscular Atrophy,Progressive Proximal Myelopathic Muscular Atrophy,Proximal Myelopathic Muscular Atrophy, Progressive,Scapuloperoneal Spinal Muscular Atrophy,Spinal Amyotrophy,Spinal Muscular Atrophy, Distal,Spinal Muscular Atrophy, Oculopharyngeal,Spinal Muscular Atrophy, Scapuloperoneal,Spinal Muscular Atrophy, Scapuloperoneal Form,Adult Onset Spinal Muscular Atrophy,Amyotrophies, Spinal,Amyotrophy, Spinal,Atrophies, Progressive Muscular,Atrophy, Myelopathic Muscular,Atrophy, Progressive Muscular,Atrophy, Spinal Muscular,Bulbospinal Neuronopathies,Hereditary Motor Neuronopathies,Motor Neuronopathies, Hereditary,Motor Neuronopathy, Hereditary,Muscular Atrophies, Progressive,Muscular Atrophy, Myelopathic,Muscular Atrophy, Progressive,Neuronopathies, Bulbospinal,Neuronopathies, Hereditary Motor,Neuronopathy, Bulbospinal,Neuronopathy, Hereditary Motor,Progressive Muscular Atrophies,Spinal Amyotrophies
D009419 Nerve Tissue Proteins Proteins, Nerve Tissue,Tissue Proteins, Nerve
D010375 Pedigree The record of descent or ancestry, particularly of a particular condition or trait, indicating individual family members, their relationships, and their status with respect to the trait or condition. Family Tree,Genealogical Tree,Genealogic Tree,Genetic Identity,Identity, Genetic,Family Trees,Genealogic Trees,Genealogical Trees,Genetic Identities,Identities, Genetic,Tree, Family,Tree, Genealogic,Tree, Genealogical,Trees, Family,Trees, Genealogic,Trees, Genealogical
D002895 Chromosomes, Human, Pair 5 One of the two pairs of human chromosomes in the group B class (CHROMOSOMES, HUMAN, 4-5). Chromosome 5
D005091 Exons The parts of a transcript of a split GENE remaining after the INTRONS are removed. They are spliced together to become a MESSENGER RNA or other functional RNA. Mini-Exon,Exon,Mini Exon,Mini-Exons
D005260 Female Females
D005808 Genes, Recessive Genes that influence the PHENOTYPE only in the homozygous state. Conditions, Recessive Genetic,Genetic Conditions, Recessive,Recessive Genetic Conditions,Condition, Recessive Genetic,Gene, Recessive,Genetic Condition, Recessive,Recessive Gene,Recessive Genes,Recessive Genetic Condition

Related Publications

B Wirth, and D Tessarolo, and E Hahnen, and S Rudnik-Schöneborn, and H Raschke, and M Liguori, and M Giacanelli, and K Zerres
February 1966, Journal of neurology, neurosurgery, and psychiatry,
B Wirth, and D Tessarolo, and E Hahnen, and S Rudnik-Schöneborn, and H Raschke, and M Liguori, and M Giacanelli, and K Zerres
January 2014, Zhurnal nevrologii i psikhiatrii imeni S.S. Korsakova,
B Wirth, and D Tessarolo, and E Hahnen, and S Rudnik-Schöneborn, and H Raschke, and M Liguori, and M Giacanelli, and K Zerres
January 2007, Zeitschrift fur Orthopadie und Unfallchirurgie,
B Wirth, and D Tessarolo, and E Hahnen, and S Rudnik-Schöneborn, and H Raschke, and M Liguori, and M Giacanelli, and K Zerres
February 1966, Archives of neurology,
B Wirth, and D Tessarolo, and E Hahnen, and S Rudnik-Schöneborn, and H Raschke, and M Liguori, and M Giacanelli, and K Zerres
November 1970, Journal of the neurological sciences,
B Wirth, and D Tessarolo, and E Hahnen, and S Rudnik-Schöneborn, and H Raschke, and M Liguori, and M Giacanelli, and K Zerres
April 1976, Journal of medical genetics,
B Wirth, and D Tessarolo, and E Hahnen, and S Rudnik-Schöneborn, and H Raschke, and M Liguori, and M Giacanelli, and K Zerres
September 1990, Lancet (London, England),
B Wirth, and D Tessarolo, and E Hahnen, and S Rudnik-Schöneborn, and H Raschke, and M Liguori, and M Giacanelli, and K Zerres
June 2010, Archives of orthopaedic and trauma surgery,
B Wirth, and D Tessarolo, and E Hahnen, and S Rudnik-Schöneborn, and H Raschke, and M Liguori, and M Giacanelli, and K Zerres
December 1981, Zhonghua yi xue za zhi,
B Wirth, and D Tessarolo, and E Hahnen, and S Rudnik-Schöneborn, and H Raschke, and M Liguori, and M Giacanelli, and K Zerres
November 2013, The application of clinical genetics,
Copied contents to your clipboard!