4.6 Article

Chronic reduction of store operated Ca2+ entry is viable therapeutically but is associated with cardiovascular complications

期刊

JOURNAL OF PHYSIOLOGY-LONDON
卷 600, 期 22, 页码 4827-4848

出版社

WILEY
DOI: 10.1113/JP283811

关键词

hypertension; immunodeficiency; STIM1; store-operated Ca2+ entry; tachycardia

资金

  1. Biomedical Research Program at Weill Cornell Medical College in Qatar (BMRP) - Qatar National Research Fund (QNRF) [NPRP12S-0212-190074]
  2. Qatar National Library

向作者/读者索取更多资源

Loss of function mutations in store-operated Ca2+ entry (SOCE) are associated with severe pediatric disorders. It is unclear whether chronic SOCE inhibition is viable therapeutically. Using a genetic mouse model, researchers found that chronic SOCE inhibition is viable therapeutically, but can lead to cardiovascular complications.
Loss of function mutations in store-operated Ca2+ entry (SOCE) are associated with severe paediatric disorders in humans, including combined immunodeficiency, anaemia, thrombocytopenia, anhidrosis and muscle hypotonia. Given its central role in immune cell activation, SOCE has been a therapeutic target for autoimmune and inflammatory diseases. Treatment for such chronic diseases would require prolonged SOCE inhibition. It is, however, unclear whether chronic SOCE inhibition is viable therapeutically. Here we address this issue using a novel genetic mouse model (SOCE hypomorph) with deficient SOCE, nuclear factor of activated T cells activation, and T cell cytokine production. SOCE hypomorph mice develop and reproduce normally and do not display muscle weakness or overt anhidrosis. They do, however, develop cardiovascular complications, including hypertension and tachycardia, which we show are due to increased sympathetic autonomic nervous system activity and not cardiac or vascular smooth muscle autonomous defects. These results assert that chronic SOCE inhibition is viable therapeutically if the cardiovascular complications can be managed effectively clinically. They further establish the SOCE hypomorph line as a genetic model to define the therapeutic window of SOCE inhibition and dissect toxicities associated with chronic SOCE inhibition in a tissue-specific fashion.

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