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A missense variant at the RAC1-PAK1 binding site of RAC1 inactivates downstream signaling in VACTERL association. | LitMetric

AI Article Synopsis

  • A rare de novo variant (p.Tyr40His) was found in a male patient with severe congenital anomalies, leading to a fatal respiratory condition shortly after birth.
  • The study showed that this specific variant weakly interacts with the protein PAK1, hindering its activation and potentially disrupting important signaling pathways that could explain the patient's clinical issues.

Article Abstract

RAC1 at 7p22.1 encodes a RAC family small GTPase that regulates actin cytoskeleton organization and intracellular signaling pathways. Pathogenic RAC1 variants result in developmental delay and multiple anomalies. Here, exome sequencing identified a rare de novo RAC1 variant [NM_018890.4:c.118T > C p.(Tyr40His)] in a male patient. Fetal ultrasonography indicated the patient to have multiple anomalies, including persistent left superior vena cava, total anomalous pulmonary venous return, esophageal atresia, scoliosis, and right-hand polydactyly. After birth, craniofacial dysmorphism and esophagobronchial fistula were confirmed and VACTERL association was suspected. One day after birth, the patient died of respiratory failure caused by tracheal aplasia type III. The molecular mechanisms of pathogenic RAC1 variants remain largely unclear; therefore, we biochemically examined the pathophysiological significance of RAC1-p.Tyr40His by focusing on the best characterized downstream effector of RAC1, PAK1, which activates Hedgehog signaling. RAC1-p.Tyr40His interacted minimally with PAK1, and did not enable PAK1 activation. Variants in the RAC1 Switch II region consistently activate downstream signals, whereas the p.Tyr40His variant at the RAC1-PAK1 binding site and adjacent to the Switch I region may deactivate the signals. It is important to accumulate data from individuals with different RAC1 variants to gain a full understanding of their varied clinical presentations.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10275923PMC
http://dx.doi.org/10.1038/s41598-023-36381-0DOI Listing

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