4.7 Article

Mutations in Myosin Light Chain Kinase Cause Familial Aortic Dissections

Journal

AMERICAN JOURNAL OF HUMAN GENETICS
Volume 87, Issue 5, Pages 701-707

Publisher

CELL PRESS
DOI: 10.1016/j.ajhg.2010.10.006

Keywords

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Funding

  1. National Institutes of Health [R21 HL091509, P50HL083794 01, RO1 HL62594, HL29043, UL1 RR024148]
  2. Moss Heart Fund
  3. Fouad A and Val Imm Bashour Distinguished Chair in Physiology
  4. Vivian L Smith Foundation
  5. Tex Gen Foundation
  6. Dons Duke Charitable Trust

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Mutations in smooth muscle cell (SMC) specific isoforms of a actin and B myosin heavy chain, two major components of the SMC contractile unit cause familial thoracic aortic aneurysms leading to acute aortic dissections (FTAAD) To investigate whether mutations in the kinase that controls SMC contractile function (myosin light chain kinase [MYLK]) cause FTAAD, we sequenced MYLK by using DNA from 193 affected probands from unrelated FTAAD families One nonsense and four missense variants were identified in MYLK and were not present in matched controls Two variants, p R1480X (c 4438C>1) and p S1759P (c 5275T>C), segregated with aortic dissections in two families with a maximum LOD score of 2 1 providing evidence of linkage of these rare variants to the disease (p = 0 0009) Both families demonstrated a similar phenotype characterized by presentation with an acute aortic dissection with little to no enlargement of the aorta The p R1480X mutation leads to a truncated protein lacking the kinase and calmodulin binding domains and p Si 759P alters amino acids in the alpha helix of the calmodulin binding sequence, which disrupts kinase binding to calmodulin and reduces kinase activity in vitro Furthermore, mice with SMC specific knockdown of Mylk demonstrate altered gene expression and pathology consistent with medial degeneration of the aorta Thus, genetic and functional studies support the conclusion that heterozygous loss of function mutations in MYLK are associated with aortic dissections

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