AI Article Synopsis

  • Inherited gene mutations related to oculodentodigital dysplasia are often linked to skin disorders like erythrokeratodermia variabilis et progressiva (EKVP), which involves erythematous and hyperkeratotic lesions.
  • Two specific mutations associated with EKVP can increase hemichannel activity, but the effects of other mutations, P283L and T290N, are still unclear.
  • Research suggests these variants may affect Cx43 protein stability and surface presence in keratinocytes, but more studies are needed to confirm their role in EKVP and identify any other potential mutations.

Article Abstract

Although inherited (encoding Cx43) gene mutations most often lead to oculodentodigital dysplasia and related disorders, four variants have been linked to erythrokeratodermia variabilis et progressiva (EKVP), a skin disorder characterized by erythematous and hyperkeratotic lesions. While two autosomal-dominant EKVP-linked mutations have been shown to lead to augmented hemichannels, the consequence(s) of keratinocytes harboring a de novo P283L variant alone or in combination with a de novo T290N variant remain unknown. Interestingly, these variants reside within or adjacent to a carboxy terminus polypeptide motif that has been shown to be important in regulating the internalization and degradation of Cx43. Cx43-rich rat epidermal keratinocytes (REKs) or Cx43-ablated REKs engineered to express fluorescent protein-tagged P283L and/or T290N variants formed prototypical gap junctions at cell-cell interfaces similar to wildtype Cx43. Dye coupling and dye uptake studies further revealed that each variant or a combination of both variants formed functional gap junction channels, with no evidence of augmented hemichannel function or induction of cell death. Tracking the fate of EKVP-associated variants in the presence of the protein secretion blocker brefeldin A, or an inhibitor of protein synthesis cycloheximide, revealed that P283L or the combination of P283L and T290N variants either significantly extended Cx43 residency on the cell surface of keratinocytes or delayed its degradation. However, caution is needed in concluding that this modest change in the Cx43 life cycle is sufficient to cause EKVP, or whether an additional underlying mechanism or another unidentified gene mutation is contributing to the pathogenesis found in patients. This question will be resolved if further patients are identified where whole exome sequencing reveals a Cx43 P283L variant alone or, in combination with a T290N variant, co-segregates with EKVP across several family generations.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8745721PMC
http://dx.doi.org/10.3390/ijms23010486DOI Listing

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