The hereditary spastic paraplegias (HSP) are a heterogeneous group of genetic neurodegenerative disorders in which the main feature is progressive spasticity of the lower limbs due to pyramidal tract dysfunction. Clinically HSP are divided into two forms: a pure form that presents with progressive lower limb spasticity and weakness, sensory signs and bladder dysfunction, and a complicated form, associated with more extensive neurological and extra neurological signs as well as pathological findings on brain imaging. The clinical variability observed in HSP is supported by the large underlying genetic heterogeneity. Hereditary spastic paraplegia with thin corpus callosum (HSP-TCC) is a frequent subtype of complicated HSP clinically characterized by a slowly progressive spastic paraparesis with cognitive impairment and thin corpus callosum (TCC). SPG11, the most frequent gene associated with HSP-TCC, encodes spatacsin, a protein of unknown function. We describe two siblings from an Arabic consanguineous family with slowly progressive spastic paraparesis, mental retardation, seizures, thin corpus callosum and periventricular white matter abnormalities. Homozygosity mapping identified a novel single candidate region of 7.3 Mb on chromosome 1p13.2-1p12. The finding of a new locus for AR-HSP-TCC further demonstrates the extensive genetic heterogeneity of this condition.

Download full-text PDF

Source
http://dx.doi.org/10.1016/j.jns.2011.03.011DOI Listing

Publication Analysis

Top Keywords

thin corpus
16
corpus callosum
16
hereditary spastic
12
spastic paraplegia
8
paraplegia thin
8
genetic heterogeneity
8
slowly progressive
8
progressive spastic
8
spastic paraparesis
8
spastic
5

Similar Publications

The cytoskeleton, composed of microtubules, intermediate filaments and actin filaments is vital for various cellular functions, particularly within the nervous system, where microtubules play a key role in intracellular transport, cell morphology, and synaptic plasticity. Tubulin-specific chaperones, including tubulin folding cofactors (TBCA, TBCB, TBCC, TBCD, TBCE), assist in the proper formation of α/β-tubulin heterodimers, essential for microtubule stability. Pathogenic variants in these chaperone-encoding genes, especially TBCD, have been linked to Progressive Encephalopathy with Brain Atrophy and Thin Corpus Callosum (PEBAT, OMIM #604,649), a severe neurodevelopmental disorder.

View Article and Find Full Text PDF

Objectives: In this study, we describe a 54-year-old Indian woman who presented with clinical features of Kufs syndrome A (KSA) and Kufs syndrome B (KSB), as well as neuropathologic and genetic findings consistent with neuronal ceroid lipofuscinosis type 13 (CLN13). Subsequently, we review the clinicopathologic features of 20 patients with CLN13 reported in the literature.

Methods: Data and imaging were obtained from the patient's medical records.

View Article and Find Full Text PDF

Background: HIDEA syndrome (MIM: #618493) is a rare autosomal recessive disorder characterized by hypotonia, hypoventilation, intellectual disability, dysautonomia, epilepsy, and eye anomalies. We present the case of a Turkish female with developmental and epileptic encephalopathy, highlighting a novel compound heterozygous variation in the P4HTM gene.

Case Presentation: A 6-year and 11-month-old girl with early infantile epileptic encephalopathy and abnormal eye movements since the neonatal period has been presented to our clinic.

View Article and Find Full Text PDF
Article Synopsis
  • Developing a cost-effective and efficient electrocatalyst for hydrogen and oxygen evolution reactions is a significant research challenge due to its potential in energy storage and conversion.
  • This study presents two types of covalent organic networks synthesized from isoindigo: a crystalline 2D framework (I-TTA COF) and an amorphous fibrous polymer (I-TG COP).
  • The I-TTA COF demonstrates superior electrocatalytic performance, achieving a current density of 10 mA cm-2 with minimal overpotentials for both HER and OER while maintaining its activity after extensive testing.
View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!