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Published on: August 20, 2019
Four patients with D-bifunctional protein (DBP) deficiency: Expanding the phenotypic spectrum of a highly variable
Yuval E Landau1,2, Gali Heimer3,4, Ortal Barel5
1Metabolic Disease Unit, Edmond and Lily Safra Children's hospital, Sheba Medical Center, Sackler Faculty of Medicine, Tel Aviv University, Israel.
Insights
Peroxisomal D-bifunctional protein (DBP) deficiency, caused by HSD17B4 gene mutations, presents with diverse symptoms, even among patients with identical mutations. This expands the known clinical spectrum of DBP deficiency.
Area of Science:
- Genetics
- Biochemistry
- Neurology
Background:
- Peroxisomal D-bifunctional protein (DBP) deficiency is an autosomal recessive disorder.
- DBP deficiency historically presents as a Zellweger-like syndrome with neonatal seizures, retinopathy, hearing loss, and dysmorphic features.
- The HSD17B4 gene encodes DBP, crucial for peroxisomal substrate oxidation.
Purpose of the Study:
- To describe four patients with DBP deficiency, highlighting phenotypic diversity.
- To emphasize the clinical, biochemical, and neuroimaging characteristics of DBP deficiency.
- To expand the understanding of the clinical spectrum of DBP deficiency.
Main Methods:
- Case study of four patients (2 unrelated girls, 2 monozygotic twin sisters) with DBP deficiency.
- Clinical evaluation including neuroimaging (MRI) and genetic sequencing (whole exome sequencing) of the HSD17B4 gene.
- Biochemical assays of peroxisomal beta-oxidation and very-long-chain fatty acids (VLCFA) levels.
Main Results:
- Phenotypic diversity observed in DBP deficiency, even among patients with identical HSD17B4 mutations.
- Patient 1: hypotonia, seizures, developmental delay, sensorineural hearing loss, cortical blindness, polymicrogyria; HSD17B4 mutations: c.752G>A, c.868+1delG.
- Patient 2: hypotonia, motor delay, sensorineural hearing loss, developmental regression, peripheral neuropathy, cerebellar atrophy; HSD17B4 mutations: c.14T>G, c.752G>A.
- Patients 3 & 4 (twins): hypotonia, developmental delay, macrocephaly, sensorineural hearing loss, infantile spasms, adrenal insufficiency; HSD17B4 mutations: same as Patient 1.
- Normal VLCFA levels in two of three patients.
Conclusions:
- DBP deficiency exhibits significant clinical variability, even with identical HSD17B4 mutations.
- The clinical spectrum of DBP deficiency is broader than previously recognized.
- DBP deficiency should be considered in the differential diagnosis of hypotonia and developmental delay, especially with associated neurological or endocrine abnormalities, irrespective of VLCFA levels.
Introduction:
Peroxisomal D-bifunctional protein (DBP) deficiency is an autosomal recessive disorder historically described as a Zellweger-like syndrome comprising neonatal seizures, retinopathy, hearing loss, dysmorphic features, and other complications. The HSD17B4 gene encodes DBP which is essential for oxidation of peroxisomal substrates. We describe 4 patients - 2 unrelated female girls and 2 monozygotic twin sisters - with DBP deficiency and phenotypic diversity.
Patient Reports:
Patient 1 presented neonatally with hypotonia and seizures, and later on developed global developmental delay and regression, sensorineural hearing loss, nystagmus and cortical blindness. The brain MRI demonstrated bilateral peri-sylvian polymicrogyria. Whole exome sequencing revealed 2 mutations in the HSD17B4 gene (c.752G>A, p.(Arg251Gln); c.868 + 1delG).Patient 2 presented with hypotonia, motor delay, and sensorineural hearing loss in infancy, considerable developmental regression during her fourth year, nystagmus, and peripheral neuropathy. Brain MRI demonstrated cerebellar atrophy and abnormal basal ganglia and white matter signal, which appeared after the age of two years. Whole exome sequencing revealed 2 mutations in the HSD17B4 gene (c.14 T>G, p.(Leu5Arg); c.752G>A, p.(Arg251Gln)).Patients 3 and 4, two female monozygotic twins, presented with hypotonia, developmental delay, and macrocephaly from birth, and later on also sensorineural hearing loss, infantile spasms and hypsarrhythmia, and adrenal insufficiency. Brain MRI demonstrated delayed myelination, and an assay of peroxisomal beta oxidation suggested DBP deficiency. Sequencing of the HSD17B4 gene revealed the same 2 mutations as in patient 1.
Discussion:
We describe 4 patients with variable and diverse clinical picture of DBP deficiency and particularly emphasize the clinical, biochemical, and neuroimaging characteristics. Interestingly, the clinical phenotype varied even between patients with the exact two mutations in the HSD17B4 gene. In addition, in two of the three patients in whom levels of VLCFA including phytanic acid were measured, the levels were within normal limits. This is expanding further the clinical spectrum of this disorder, which should be considered in the differential diagnosis of every patient with hypotonia and developmental delay especially if accompanied by polymicrogyria, seizures, sensorineural hearing loss, or adrenal insufficiency regardless of their VLCFA profile.
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