Overlapping neurological phenotypes in two extended consanguineous families with novel variants in the CNTNAP1 and ADGRG1 genes

Author:

Khan Shazia1234ORCID,Umair Muhammad56,Abbas Safdar7,Ali Uroba1,Zaman Gohar8,Ansar Muhammad2,Wang Rongrong9,Zhang Xue910,Houlden Henry11,Harlalka Gaurav V.312,Gul Asma1ORCID

Affiliation:

1. Department of Biological Sciences International Islamic University Islamabad Pakistan

2. Department of Biochemistry, Faculty of Biological Sciences Quaid‐i‐Azam University Islamabad Pakistan

3. Medical Research, RILD Wellcome Wolfson Centre (Level 4) Royal Devon and Exeter NHS Foundation Trust Exeter Devon UK

4. Hafeez Institute of Medical Sciences Islamabad Pakistan

5. Medical Genomics Research Department, King Abdullah International Medical Research Center (KAIMRC), King Saud Bin Abdulaziz University for Health Sciences Ministry of National Guard Health Affairs (MNGH) Riyadh Saudi Arabia

6. Department of Life Sciences, School of Science University of Management and Technology (UMT) Lahore Pakistan

7. Department of Biological Science Dartmouth College Hanover NH USA

8. Department of Computer Science Abbottabad University of Science and Technology Havelian Abbottabad Pakistan

9. McKusick‐Zhang Center for Genetic Medicine, Institute of Basic Medical Sciences Chinese Academy of Medical Sciences School of Basic Medicine Peking Union Medical College Beijing China

10. The Research Center for Medical Genomics China Medical University Shenyang China

11. Department of Neuromuscular Disorder UCL Institute of Neurology London UK

12. Department of Pharmacology Samarth College of Pharmacy Deulgaon Raja, Dist. Buldana Maharashtra India

Abstract

AbstractBackgroundPopulation diversity is important and rare disease isolates can frequently reveal novel homozygous or biallelic mutations that lead to expanded clinical heterogeneity, with diverse clinical presentations.MethodsThe present study describes two consanguineous families with a total of seven affected individuals suffering from a clinically similar severe syndromic neurological disorder, with abnormal development and central nervous system (CNS) and peripheral nervous system (PNS) abnormalities. Whole exome sequencing (WES) and Sanger sequencing followed by 3D protein modeling was performed to identify the disease‐causing gene. RNA was extracted from the fresh blood of both families affected and healthy individuals.ResultsThe families were clinically assessed in the field in different regions of Khyber Pakhtunkhwa. Magnetic resonance imagining was obtained in the probands and blood was collected for DNA extraction and WES was performed. Sanger sequencing confirmed a homozygous, likely pathogenic mutation (GRCh38: chr17:42684199G>C; (NM_003632.3): c.333G>C);(NP_003623.1): p.(Trp111Cys) in the CNTNAP1 gene in family A, previously associated with Congenital Hypo myelinating Neuropathy 3 (CHN3; OMIM # 618186) and a novel nonsense variant in family B, (GRCh38: chr16: 57654086C>T; NC_000016.10 (NM_001370440.1): c.721C>T); (NP_001357369.1): p.(Gln241Ter) in the ADGRG1 gene previously associated with bilateral frontoparietal polymicrogyria (OMIM # 606854); both families have extended CNS and PNS clinical manifestations. In addition, 3D protein modeling was performed for the missense variant, p.(Trp111Cys), identified in the CNTNAP1, suggesting extensive secondary structure changes that might lead to improper function or downstream signaling. No RNA expression was observed in both families affected and healthy individuals hence showing that these genes are not expressed in blood.ConclusionsIn the present study, two novel biallelic variants in the CNTNAP1 and ADGRG1 genes in two different consanguineous families with a clinical overlap in the phenotype were identified. Thus, the clinical and mutation spectrum is expanded to provide further evidence that CNTNAP1 and ADGRG1 are very important for widespread neurological development.

Publisher

Wiley

Subject

Genetics (clinical),Drug Discovery,Genetics,Molecular Biology,Molecular Medicine

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