AI Article Synopsis

  • EA2 and FHM1 are genetic disorders caused by mutations in the CACNA1A gene, which affects calcium channels in neurons, but other genetic changes may also play a role.
  • Researchers used a specific method called MLPA to look for large genetic rearrangements in the CACNA1A gene that traditional DNA sequencing might miss.
  • They discovered five new large deletions and one duplication in the CACNA1A gene linked to EA2 and FHM1, highlighting the need for more comprehensive genetic testing methods for accurate diagnosis.

Article Abstract

Background: Episodic ataxia type 2 (EA2) and familial hemiplegic migraine type 1 (FHM1) are autosomal dominant disorders characterised by paroxysmal ataxia and migraine, respectively. Point mutations in CACNA1A, which encodes the neuronal P/Q-type calcium channel, have been detected in many cases of EA2 and FHM1. The genetic basis of typical cases without CACNA1A point mutations is not fully known. Standard DNA sequencing methods may miss large scale genetic rearrangements such as deletions and duplications. The authors investigated whether large scale genetic rearrangements in CACNA1A can cause EA2 and FHM1.

Methods: The authors used multiplex ligation dependent probe amplification (MLPA) to screen for intragenic CACNA1A rearrangements.

Results: The authors identified five previously unreported large scale deletions in CACNA1A in seven families with episodic ataxia and in one case with hemiplegic migraine. One of the deletions (exon 6 of CACNA1A) segregated with episodic ataxia in a four generation family with eight affected individuals previously mapped to 19p13. In addition, the authors identified the first pathogenic duplication in CACNA1A in an index case with isolated episodic diplopia without ataxia and in a first degree relative with episodic ataxia.

Conclusions: Large scale deletions and duplications can cause CACNA1A associated channelopathies. Direct DNA sequencing alone is not sufficient as a diagnostic screening test.

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Source
http://dx.doi.org/10.1136/jmg.2009.067967DOI Listing

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