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March 3, 2014Journal of Clinical Investigation367 citationsOpen Access

Genetics of lymphatic anomalies

PBPascal BrouillardLBLaurence M. BoonMVMiikka Vikkula

Key Points

  • The aim is to understand the genetic basis of lymphatic anomalies and their effects on lymphatic vessel development.
  • Analysis of germline mutations in at least 20 genes related to lymphatic anomalies.
  • Investigating the impact of mutations on VEGFR-3 signaling and downstream pathways.
  • Utilizing murine models to assess the physiological implications of mutations.
  • Germline mutations account for over 25% of primary lymphedema cases, particularly inherited forms.
  • Mutations affect RAS/MAPK and PI3K/AKT signaling pathways.
  • Most murine knockouts for relevant genes are homozygous lethal, indicating distinct differences in lymphatic physiology.

Abstract

Lymphatic anomalies include a variety of developmental and/or functional defects affecting the lymphatic vessels: sporadic and familial forms of primary lymphedema, secondary lymphedema, chylothorax and chylous ascites, lymphatic malformations, and overgrowth syndromes with a lymphatic component. Germline mutations have been identified in at least 20 genes that encode proteins acting around VEGFR-3 signaling but also downstream of other tyrosine kinase receptors. These mutations exert their effects via the RAS/MAPK and the PI3K/AKT pathways and explain more than a quarter of the incidence of primary lymphedema, mostly of inherited forms. More common forms may also result from multigenic effects or post-zygotic mutations. Most of the corresponding murine knockouts are homozygous lethal, while heterozygotes are healthy, which suggests differences in human and murine physiology and the influence of other factors.

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Cite This Study

Brouillard et al. (2014) studied this question.

synapsesocial.com/papers/69d8da67ade63f05b9bedb53https://doi.org/10.1172/jci71614
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