Human equivalent of mouse disorganization: Has the case been made?

Alasdair G W Hunter1

  • 1Genetics Patient Service Unit, Children's Hospital of Eastern Ontario, Ottawa, Canada. heddalasdair@aol.com

Insights

The mouse disorganization (Ds) gene is a model for human limb malformations. However, many reported human equivalents of Ds (HEDs) do not accurately represent the unique anomalies seen in the Ds mouse.

Area of Science:

  • Developmental Biology
  • Genetics
  • Clinical Genetics

Background:

  • Mouse disorganization (Ds) was proposed as a model for human tibial agenesis, fibular duplication, and mirror-foot malformations.
  • Subsequent reports categorized potential human equivalents of Ds (HEDs) into band/constriction anomalies (ABS) or patterns resembling mouse Ds (non-ABS).

Purpose of the Study:

  • To re-evaluate the hypothesis that reported HEDs patients accurately represent the Ds mouse model.
  • To assess the strength of evidence for HEDs by comparing patient anomalies to unique Ds mouse malformations.

Main Methods:

  • Literature review of HEDs patients reported between 1989 and January 2010, using PubMed and cited references.
  • Analysis of patient malformations against unique and non-unique anomalies described in original Ds mouse reports by Hummel (1958, 1959).

Main Results:

  • The ABS category of HEDs, even with non-band anomalies, is unlikely to frequently represent HEDs.
  • Many non-ABS HEDs patients lacked unique Ds mouse malformations, presented with alternative diagnoses, or had unusual/unreported malformations for the Ds mouse model.

Conclusions:

  • The argument for HEDs is weakened when patient anomalies do not align with the unique malformations of the Ds mouse.
  • Many reported HEDs cases may not be true human equivalents of the Ds mouse, necessitating careful differential diagnosis.

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