Novel gene mutations in three Japanese patients with ARC syndrome associated mild phenotypes: a case series
Yoshinori Satomura1, Kazuhiko Bessho2, Nobutoshi Nawa1
1Department of Pediatrics, Graduate School of Medicine, Osaka University, 2-2 Yamadaoka, Suita, Osaka, 565-0871, Japan.
Background:
Arthrogryposis, renal dysfunction, and cholestasis syndrome (ARCS) is a rare autosomal recessive disorder caused by mutations in VPS33B (ARCS1) and VIPAS39 (ARCS2). As per literature, most patients with ARCS died of persistent infections and bleeding by the age of 1 year. We report the first Japanese cases with ARCS1 and ARCS2 who presented with mild phenotypes and were diagnosed via genetic testing.
Case Presentation:
Case 1: A 6-year-old boy born to nonconsanguineous Japanese parents presented with jaundice and normal serum gamma-glutamyl transferase (GGT) levels, proteinuria, bilateral nerve deafness, motor delay, failure to thrive, and persistent pruritus. After cochlear implantation for deafness at the age of 2 years, despite a normal platelet count and prothrombin time-international normalized ratio, the patient presented with persistent bleeding that required hematoma removal. Although he did not show any obvious signs of arthrogryposis, he was suspected to have ARCS based on other symptoms. Compound heterozygous mutations in VPS33B were identified using targeted next-generation sequencing (NGS), which resulted in no protein expression. Case 2: A 7-month-old boy, the younger brother of case 1, presented with bilateral deafness, renal tubular dysfunction, failure to thrive, and mild cholestasis. He had the same mutations that were identified in his brother's VPS33B. Case 3: A 24-year-old man born to nonconsanguineous Japanese parents was suspected to have progressive familial intrahepatic cholestasis 1 (PFIC1) in his childhood on the basis of low GGT cholestasis, renal tubular dysfunction, sensory deafness, mental retardation, and persistent itching. A liver biopsy performed at the age of 16 years showed findings that were consistent with PFIC1. He developed anemia owing to intraperitoneal hemorrhage from a peripheral intrahepatic artery the day after the biopsy, and transcatheter arterial embolization was required. ARCS2 was diagnosed using targeted NGS, which identified novel compound heterozygous mutations in VIPAS39.
Conclusions:
The first Japanese cases of ARCS1 and ARCS2 diagnosed using genetic tests were reported in this study. These cases are milder than those previously reported. For patients with ARCS, invasive procedures should be performed with meticulous care to prevent bleeding.
Insights
This study reports the first Japanese cases of Arthrogryposis, renal dysfunction, and cholestasis syndrome (ARCS1 and ARCS2), diagnosed through genetic testing. These patients exhibited milder symptoms than previously documented, highlighting the need for careful procedures to prevent bleeding.
Area of Science:
- Genetics
- Pediatrics
- Rare Diseases
Background:
- Arthrogryposis, renal dysfunction, and cholestasis syndrome (ARCS) is a rare autosomal recessive disorder.
- Mutations in VPS33B (ARCS1) and VIPAS39 (ARCS2) cause ARCS.
- Literature indicates most ARCS patients die by age 1 due to infections and bleeding.
Observation:
- The study details the first Japanese pediatric cases of ARCS1 and ARCS2.
- Patients presented with milder phenotypes, including jaundice, deafness, renal dysfunction, failure to thrive, and bleeding tendencies.
- Genetic testing identified compound heterozygous mutations in VPS33B for ARCS1 and novel mutations in VIPAS39 for ARCS2.
Findings:
- The first Japanese ARCS1 and ARCS2 cases were diagnosed via genetic testing.
- These cases presented with milder phenotypes compared to previously reported ARCS patients.
- VPS33B mutations in ARCS1 resulted in no detectable protein expression.
Implications:
- Genetic diagnosis is crucial for identifying ARCS, even with mild presentations.
- Physicians should exercise extreme caution during invasive procedures for ARCS patients to mitigate bleeding risks.
- This study expands the clinical and genetic spectrum of ARCS, particularly in the Japanese population.
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