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Membrane Protein Complexes Involved in Thrombospondin-1 Regulation of Nitric Oxide Signaling

机译:膜蛋白复合体参与一氧化氮信号的血小板反应蛋白1调节。

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摘要

Thrombospondin-1 (TSP-1) binding to its membrane receptor CD47 results in an inhibtion of the nitric oxide (NO) receptor soluble guanylate cyclase (sGC) and a decrease in intracellular cGMP levels. This causes physiologic effects such as vasoconstriction and a rise in blood pressure. The mechanism by which TSP-1 binds to CD47 at the membrane to decrease sGC activity is largely unknown. CD47 can physically associate with a number of binding partners, including α(v)β₃ and vascular endothelial growth factor receptor 2 (VEGFR2). Binding of a C-terminal fragment of TSP-1 called E3CaG1 to CD47 leads to a rise in intracellular calcium ([Ca²⁺](i)), which decreases sGC activity via a phosphorylation event. Binding of E3CaG1 is also known to disrupt the interaction between CD47 and VEGFR2, leading to a decrease in endothelial nitric-oxide synthase (eNOS) activity and cGMP levels through an Akt signaling pathway. However, it is not known whether other membrane proteins associated with CD47 are required for E3CaG1 binding and a subsequent [Ca²⁺](i) increase. Plasmon-waveguide resonance (PWR) spectroscopy was employed to elucidate the mechanism of TSP-1 inhibition of sGC activity through membrane complexes involving CD47. Using PWR, I found E3CaG1 can bind specifically to CD47 within native Jurkat membranes with picomolar and nanomolar dissociation constants (K(d)), suggesting multiple CD47 complexes are present. Among these complexes, CD47/VEGFR2 was found to bind E3CaG1 with a picomolar K(d)and CD47/α(v)β₃ was found to bind E3CaG1 with a nanomolar K(d). In addition, the presence of an anti-VEGFR2 antibody inhibited the E3CaG1-induced calcium response, which suggested CD47 in complex with VEGFR2 was responsible for TSP-1 reduction of sGC activity. I show that when both CD47 and VEGFR2 are returned to a HEK 293T cell line that does not contain these receptors, an increase in [Ca²⁺](i) upon E3CaG1 binding is restored. Interestingly, E3CaG1 was also found to bind to VEGFR2 in complex with the integrin α(v)β₃ on CD47-null cell lines and their derivations, causing a decrease in [Ca²⁺](i) levels. Therefore, the third type 2 repeat and C-terminal domains of TSP-1 can cause both increases and decreases in calcium based upon the availability of protein complexes to which it binds.
机译:血小板反应蛋白-1(TSP-1)与其膜受体CD47结合会抑制一氧化氮(NO)受体可溶性鸟苷酸环化酶(sGC),并降低细胞内cGMP水平。这会引起生理效应,例如血管收缩和血压升高。 TSP-1与膜上CD47结合以降低sGC活性的机制在很大程度上尚不清楚。 CD47可以与许多结合配偶体物理结合,包括α(v)β1和血管内皮生长因子受体2(VEGFR2)。 TSP-1的C末端片段E3CaG1与CD47的结合导致细胞内钙([Ca²](i))升高,从而通过磷酸化作用降低sGC活性。还已知E3CaG1的结合会破坏CD47和VEGFR2之间的相互作用,从而通过Akt信号通路导致内皮型一氧化氮合酶(eNOS)活性和cGMP水平降低。但是,尚不知道与E3CaG1结合是否需要与CD47相关的其他膜蛋白以及随后的[Ca⁺3](i)增加。等离子体波导管共振(PWR)光谱用于阐明TSP-1通过涉及CD47的膜复合物抑制sGC活性的机制。使用PWR,我发现E3CaG1可以与皮摩尔和纳摩尔离解常数(K(d))的Jurkat天然膜内的CD47特异性结合,表明存在多个CD47复合物。在这些复合物中,发现CD47 / VEGFR2与皮摩尔K(d)结合E3CaG1,发现CD47 /α(v)β1与纳摩尔K(d)结合E3CaG1。此外,抗VEGFR2抗体的存在抑制了E3CaG1诱导的钙反应,这表明与VEGFR2结合的CD47导致TSP-1 sGC活性降低。我表明,当CD47和VEGFR2都返回不包含这些受体的HEK 293T细胞系时,恢复了E3CaG1结合时[Ca 2+](i)的增加。有趣的是,还发现E3CaG1与CD47-null细胞系及其衍生蛋白上的整联蛋白α(v)β1结合而与VEGFR2结合,从而导致[Ca2 +](i)水平降低。因此,基于与之结合的蛋白质复合物的可用性,TSP-1的第三种2型重复序列和C末端结构域可引起钙的增加和减少。

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    Green Toni;

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