Screening of the Entire Ryanodine Receptor Type 1 Coding Region for Sequence Variants Associated with Malignant Hyperthermia Susceptibility in the North American Population

Author:

Sambuughin Nyamkhishig1,Holley Heather2,Muldoon Sheila3,Brandom Barbara W.4,de Bantel Astrid M.5,Tobin Joseph R.6,Nelson Tom E.7,Goldfarb Lev G.8

Affiliation:

1. Biologist.

2. Research Technician, Barrow Neurological Institute, Phoenix, Arizona.

3. Professor, Uniformed Services University of the Health Sciences, Bethesda, Maryland.

4. Professor, Children’s Hospital and the University of Pittsburgh, Pennsylvania.

5. M.D. Student Training Program.

6. Professor.

7. Professor Emeritus, Wake Forest University of Medicine, Winston Salem, North Carolina.

8. Medical Officer, National Institute of Neurological Disorders and Stroke, National Institutes of Health, Bethesda, Maryland.

Abstract

Background Malignant hyperthermia (MH) is a life-threatening and frequently fatal disorder triggered by commonly used anesthetics. MH susceptibility is a genetically determined predisposition to the development of MH. Mutations in the ryanodine receptor type 1 (RYR1) gene are the major cause of MH susceptibility. The authors sought to develop a reliable genetic screening strategy based on efficient and relatively inexpensive mutation-detection procedures. Methods A cohort (n = 30) of North American MH patients and MH-susceptible individuals was studied. RNA and DNA extracted from muscle tissue or blood lymphocytes were used for analysis. The entire RYR1 coding region was amplified in 57 overlapping fragments and subjected to denaturing high-performance liquid chromatography analysis followed by direct nucleotide sequencing to characterize RYR1 alterations. Results Nine previously reported and nine unknown RYR1 mutations were identified in 21 of 30 studied patients (70%). Some of the new mutations were located outside of known mutational "hot spots," suggesting that RYR1 contains previously unknown mutation-prone areas requiring analysis. The North American MH/MH-susceptible population is characterized by a high RYR1 allelic heterogeneity. Conclusions Denaturing high-performance liquid chromatography analysis of RNA samples extracted from the biopsied skeletal muscle followed by DNA sequencing is a highly efficient methodology for RYR1 mutation detection. This approach allows increasing the rate of mutation detection to 70% and identifying mutations in the entire RYR1 coding region.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Anesthesiology and Pain Medicine

Reference36 articles.

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