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Intelligence in Williams Syndrome Is Related to STX1A, Which Encodes a Component of the Presynaptic SNARE Complex

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  • Michael C Gao
  • Ursula Bellugi
  • Li Dai
  • Debra L Mills
  • Eric M Sobel
  • Kenneth Lange
  • Julie R Korenberg

Abstract

Although genetics is the most significant known determinant of human intelligence, specific gene contributions remain largely unknown. To accelerate understanding in this area, we have taken a new approach by studying the relationship between quantitative gene expression and intelligence in a cohort of 65 patients with Williams Syndrome (WS), a neurodevelopmental disorder caused by a 1.5 Mb deletion on chromosome 7q11.23. We find that variation in the transcript levels of the brain gene STX1A correlates significantly with intelligence in WS patients measured by principal component analysis (PCA) of standardized WAIS-R subtests, r = 0.40 (Pearson correlation, Bonferroni corrected p-value = 0.007), accounting for 15.6% of the cognitive variation. These results suggest that syntaxin 1A, a neuronal regulator of presynaptic vesicle release, may play a role in WS and be a component of the cellular pathway determining human intelligence.

Suggested Citation

  • Michael C Gao & Ursula Bellugi & Li Dai & Debra L Mills & Eric M Sobel & Kenneth Lange & Julie R Korenberg, 2010. "Intelligence in Williams Syndrome Is Related to STX1A, Which Encodes a Component of the Presynaptic SNARE Complex," PLOS ONE, Public Library of Science, vol. 5(4), pages 1-8, April.
  • Handle: RePEc:plo:pone00:0010292
    DOI: 10.1371/journal.pone.0010292
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    1. Robert Plomin, 1999. "Genetics and general cognitive ability," Nature, Nature, vol. 402(6761), pages 25-29, December.
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    Cited by:

    1. Bruton, Oliver J., 2021. "Is there a “g-neuron”? Establishing a systematic link between general intelligence (g) and the von Economo neuron," Intelligence, Elsevier, vol. 86(C).

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