Whole Exome Sequencing found a Novel Truncating Mutation within CNTNAP2 Gene in an Iranian Patient with Mental Retardation

2018 ◽  
Vol 07 (03) ◽  
Author(s):  
Mehrnoosh Shokoohi ◽  
Mohammadreza Hajjari ◽  
Javad Mohammadiasl J ◽  
Maryam Tahmasebi Birgani MT
2016 ◽  
Vol 101 (3) ◽  
pp. 898-904 ◽  
Author(s):  
Felix Schreiner ◽  
Michaela Plamper ◽  
Gesche Dueker ◽  
Stefan Schoenberger ◽  
Laura Gámez-Díaz ◽  
...  

Abstract Context: Type 1 diabetes mellitus (T1DM) is caused by autoimmunity against pancreatic β-cells. Although a significant number of T1DM patients have or will develop further autoimmune disorders during their lifetime, coexisting severe immunodysregulation is rare. Objective: Presuming autosomal-recessive inheritance in a complex immunodysregulation disorder including T1DM and short stature in two siblings, we performed whole-exome sequencing. Case Presentation: Two Libyan siblings born to consanguineous parents were presented to our diabetology department at ages 12 and 5 years, respectively. Apart from T1DM diagnosed at age 2 years, patient 1 suffered from chronic restrictive lung disease, mild enteropathy, hypogammaglobulinemia, and GH deficiency. Fluorescence-activated cell sorting analysis revealed B-cell deficiency. In addition, CD4+/CD25+ and CD25high/FoxP3+ cells were diminished, whereas an unusual CD25−/FoxP3+ population was detectable. The younger brother, patient 2, also developed T1DM during infancy. Although his enteropathy was more severe and electrolyte derangements repeatedly led to hospitalization, he did not have significant pulmonary problems. IgG levels and B-lymphocytes were within normal ranges. Results: By whole-exome sequencing we identified a homozygous truncating mutation (c.2445_2447del(C)3ins(C)2, p.P816Lfs*4) in the lipopolysaccharide-responsive beige-like anchor (LRBA) gene in both siblings. The diagnosis of LRBA deficiency was confirmed by a fluorescence-activated cell sorting-based immunoassay showing the absence of LRBA protein in phytohemagglutinin-stimulated peripheral blood mononuclear cells. Conclusion: We identified a novel truncating LRBA mutation in two siblings with T1DM, short stature, and severe immunodysregulation. LRBA mutations have previously been reported to cause multiorgan autoimmunity and immunodysfunction. In light of the variable phenotypes reported so far in LRBA-mutant individuals, LRBA deficiency should be considered in all patients presenting with T1DM and signs of severe immunodysregulation.


2021 ◽  
Vol 2021 ◽  
pp. 1-5
Author(s):  
Yue Zhang ◽  
Manhong Xu ◽  
Minglian Zhang ◽  
Guoxing Yang ◽  
Xiaorong Li

Bardet-Biedl syndrome (BBS) is a genetically heterogeneous disorder characterized by polydactyly, obesity, rod-cone dystrophy, and mental retardation. Twenty-one genes have been identified as causing BBS. This study collected a BBS pedigree from two patients and performed whole-exome sequencing on one patient. We identified a novel homozygous variant c.1114C>T (p.Q372X) in the BBS9 of the two siblings. This variant was confirmed and completely cosegregated with the disease of this family by Sanger sequencing. We report a novel homozygous variant c.1114C>T in the BBS9 gene in a Chinese family.


Author(s):  
Pouria Mohammadi ◽  
Elham Salehi Siavashani ◽  
Mohammad Farid Mohammadi ◽  
Afshin Bahramy ◽  
Navid Almadani ◽  
...  

2021 ◽  
Author(s):  
Ayşe Kartal ◽  
Sandeep Jaiswar

Abstract Hyperphosphatasia with mental retardation syndrome is a genetic disorder. We report two siblings aged three years and fourteen years who were investigated for global development delays, seizures and dysmorphic features. A novel missense variant, c.1003G>A (p. Ala335 Thr chr11.3,846,572 NM_001256236.1), in PGAP2 gene was identified using whole-exome sequencing. We highlight the significance of elevated alkaline phosphatase in patients with certain dysmorphic features, can lead to the diagnosis of hyperphosphatasia with mental retardation syndrome using exome sequencing.


2017 ◽  
Vol 7 (1) ◽  
Author(s):  
Grażyna T. Truszkowska ◽  
Zofia T. Bilińska ◽  
Angelika Muchowicz ◽  
Agnieszka Pollak ◽  
Anna Biernacka ◽  
...  

Sign in / Sign up

Export Citation Format

Share Document