AI Article Synopsis

  • - The text discusses the regulatory subunits of class IA phosphoinositide 3-kinase (PI3K) that interact with three catalytic subunits (p110α, p110β, p110δ) and how mutations in these subunits lead to specific diseases with unclear genotype-phenotype connections.
  • - Heterozygous loss-of-function mutations in p110α lead to SHORT syndrome, which is characterized by insulin resistance and short stature, while activating mutations cause APDS2 immunodeficiency, but patients don't show clear signs of p110α hyperactivation.
  • - Research on fibroblasts from APDS2 patients revealed no increase in PI3K signaling and decreased p110δ expression, indicating

Article Abstract

encodes three regulatory subunits of class IA phosphoinositide 3-kinase (PI3K), each associating with any of three catalytic subunits, namely p110α, p110β or p110δ. Constitutional mutations cause diseases with a genotype-phenotype relationship not yet fully explained: heterozygous loss-of-function mutations cause SHORT syndrome, featuring insulin resistance and short stature attributed to reduced p110α function, while heterozygous activating mutations cause immunodeficiency, attributed to p110δ activation and known as APDS2. Surprisingly, APDS2 patients do not show features of p110α hyperactivation, but do commonly have SHORT syndrome-like features, suggesting p110α hypofunction. We sought to investigate this. In dermal fibroblasts from an APDS2 patient, we found no increased PI3K signalling, with p110δ expression markedly reduced. In preadipocytes, the APDS2 variant was potently dominant negative, associating with Irs1 and Irs2 but failing to heterodimerise with p110α. This attenuation of p110α signalling by a p110δ-activating PIK3R1 variant potentially explains co-incidence of gain-of-function and loss-of-function phenotypes.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10705566PMC
http://dx.doi.org/10.1101/2023.11.02.565250DOI Listing

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