Person: Sola-Visner, Martha
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Publication A missense mutation in TFRC, encoding transferrin receptor 1, causes combined immunodeficiency
(2015) Jabara, Haifa H.; Boyden, Steven E.; Chou, Janet; Ramesh, Narayanaswamy; Massaad, Michel; Benson, Halli; Bainter, Wayne; Fraulino, David; Rahimov, Fedik; Sieff, Colin; Liu, Zhi-Jian; Alshemmari, Salem H.; Al-Ramadi, Basel K.; Al-Dhekri, Hasan; Arnaout, Rand; Abu-Shukair, Mohammad; Vatsayan, Anant; Silver, Eli; Ahuja, Sanjay; Davies, E. Graham; Sola-Visner, Martha; Ohsumi, Toshiro; Andrews, Nancy C.; Notarangelo, Luigi; Fleming, Mark; Al-Herz, Waleed; Kunkel, Louis; Geha, RaifPatients with a combined immunodeficiency characterized by normal numbers, but impaired function, of T and B cells had a homozygous p.Tyr20His mutation in transferrin receptor 1 (TfR1), encoded by TFRC. The mutation disrupts the TfR1 internalization motif, resulting in defective receptor endocytosis and markedly increased TfR1 surface expression. Iron citrate rescued the lymphocyte defects and transduction of wild type, but not mutant, TfR1 rescued impaired transferrin uptake in patient fibroblasts. TfrcY20H/Y20H mice recapitulated the patients’ immunologic defects. Despite the critical role of TfR1 in erythrocyte development and function, the patients had only mild anemia and only slightly increased TfR1 expression in erythroid precursors. We show that STEAP3, a metalloreductase expressed in erythroblasts, associates with TfR1 and partially rescues transferrin uptake in patient fibroblasts, suggesting that STEAP3 may provide an accessory TfR1 endocytosis signal that spares the patients from severe anemia. These findings demonstrate the importance of TfR1 in adaptive immunity.
Publication Effects of in vitro adult platelet transfusions on neonatal hemostasis
(Wiley-Blackwell, 2011) Ferrer-Marin, F.; Chavda, C.; Lampa, M.; Michelson, Alan; Frelinger, Andrew; Sola-Visner, MarthaBACKGROUND: Thrombocytopenia is frequent among neonates, and 20-25% of affected infants are treated with platelet transfusions. These are frequently given for mild thrombocytopenia (platelets: 50-100 × 10(9) L(-1)), largely because of the known hyporeactivity of neonatal platelets. In tests of primary hemostasis, however, neonates have shorter bleeding and closure times (CTs) than adults. This has been attributed to their higher hematocrits, higher von Willebrand factor (VWF) concentrations, and predominance of longer VWF polymers. OBJECTIVE: To determine whether the 'transfusion' of adult (relatively hyperreactive) platelets into neonatal blood results in a hypercoagulable profile. METHODS: Cord blood (CB) and adult peripheral blood (PB) were separated (with a modified buffy coat method) to generate miniaturized platelet concentrates (PCs) and thrombocytopenic blood. PB-derived and CB-derived PCs (n = 7 per group) were then 'transfused'in vitro into thrombocytopenic CB and PB. The effects of autologous vs. allogeneic (developmentally mismatched) 'transfusions' were evaluated with whole blood aggregometry, a platelet function analyzer (PFA-100), and thromboelastography (TEG). RESULTS: Adult platelets aggregated significantly better than neonatal platelets in response to thrombin receptor-activating peptide, ADP, and collagen, regardless of the blood into which they were transfused. The 'transfusion' of adult platelets into thrombocytopenic CB resulted in shorter CTs-EPI (PFA-100) and higher clot strength and firmness (TEG) than 'transfusion' of neonatal autologous platelets. CONCLUSIONS: In vitro'transfusion' of adult platelets into neonatal blood results in shorter CTs than 'transfusion' with neonatal platelets. Our findings should raise awareness of the differences between the neonatal and adult hemostatic system and the potential 'developmental mismatch' associated with platelet transfusions for neonatal hemostasis.