BackgroundPeriventricular nodular heterotopia (PNH) is a cell migration disorder associated with mutations in Filamin-A (FLNA) gene on chromosome X. Majority of the individuals with PNH-associated FLNA mutations are female whereas liveborn males with FLNA mutations are very rare. Fetal viability of the males seems to depend on the severity of the variant. Splicing or severe truncations presumed loss of function of the protein product, lead to male lethality and only partial-loss-of-function variants are reported in surviving males. Those variants mostly manifest milder clinical phenotypes in females and thus avoid detection of the disease in females.MethodsWe describe a novel p.Arg484Gln variant in the FLNA gene by performing whole exome an...
Pathogenic variants of the X-linked FLNA gene encoding filamin A protein have been associated with a...
represents a disorder of neuronal migration resulting in multi-ple gray-matter nodules along the lat...
Understanding the genetic and molecular components involved in cortical development will enhance the...
Background Periventricular nodular heterotopia (PNH) is a cell migration disorder associated with mu...
Filamin A, the filamentous protein encoded by the X-linked gene FLNA, cross-links cytoskeletal actin...
Purpose: Familial periventricular heterotopia (PH) represents a disorder of neuronal migration resul...
Periventricular heterotopia (PH) occurs when collections of neurons lay along the lateral ventricles...
Periventricular heterotopia (PH) occurs when collections of neurons lay along the lateral ventricles...
Objective: To define the clinical, radiologic, and genetic features of periventricular heterotopia (...
We describe the clinical and molecular evaluation of two patients, mother and daughter (proband), wi...
We describe the clinical and molecular evaluation of two patients, mother and daughter (proband), wi...
Remodeling of the cytoskeleton is central to the modulation of cell shape and migration. Filamin A, ...
BACKGROUND: Heterozygous loss of function mutations within the Filamin A gene in Xq28 are the most f...
Remodeling of the cytoskeleton is central to the modulation of cell shape and migration. Filamin A, ...
Objective: To identify copy number variant (CNV) causes of periventricular nodular heterotopia (PNH)...
Pathogenic variants of the X-linked FLNA gene encoding filamin A protein have been associated with a...
represents a disorder of neuronal migration resulting in multi-ple gray-matter nodules along the lat...
Understanding the genetic and molecular components involved in cortical development will enhance the...
Background Periventricular nodular heterotopia (PNH) is a cell migration disorder associated with mu...
Filamin A, the filamentous protein encoded by the X-linked gene FLNA, cross-links cytoskeletal actin...
Purpose: Familial periventricular heterotopia (PH) represents a disorder of neuronal migration resul...
Periventricular heterotopia (PH) occurs when collections of neurons lay along the lateral ventricles...
Periventricular heterotopia (PH) occurs when collections of neurons lay along the lateral ventricles...
Objective: To define the clinical, radiologic, and genetic features of periventricular heterotopia (...
We describe the clinical and molecular evaluation of two patients, mother and daughter (proband), wi...
We describe the clinical and molecular evaluation of two patients, mother and daughter (proband), wi...
Remodeling of the cytoskeleton is central to the modulation of cell shape and migration. Filamin A, ...
BACKGROUND: Heterozygous loss of function mutations within the Filamin A gene in Xq28 are the most f...
Remodeling of the cytoskeleton is central to the modulation of cell shape and migration. Filamin A, ...
Objective: To identify copy number variant (CNV) causes of periventricular nodular heterotopia (PNH)...
Pathogenic variants of the X-linked FLNA gene encoding filamin A protein have been associated with a...
represents a disorder of neuronal migration resulting in multi-ple gray-matter nodules along the lat...
Understanding the genetic and molecular components involved in cortical development will enhance the...