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Structure-based dynamic arrays in regulatory domains of sodium-calcium exchanger (NCX) isoforms

机译:钠钙交换剂(NCX)亚型的调控域中基于结构的动态阵列

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摘要

Mammalian Na+/Ca2+ exchangers, NCX1 and NCX3, generate splice variants, whereas NCX2 does not. The CBD1 and CBD2 domains form a regulatory tandem (CBD12), where Ca2+ binding to CBD1 activates and Ca2+ binding to CBD2 (bearing the splicing segment) alleviates the Na+-induced inactivation. Here, the NCX2-CBD12, NCX3-CBD12-B, and NCX3-CBD12-AC proteins were analyzed by small-angle X-ray scattering (SAXS) and hydrogen-deuterium exchange mass-spectrometry (HDX-MS) to resolve regulatory variances in the NCX2 and NCX3 variants. SAXS revealed the unified model, according to which the Ca2+ binding to CBD12 shifts a dynamic equilibrium without generating new conformational states, and where more rigid conformational states become more populated without any global conformational changes. HDX-MS revealed the differential effects of the B and AC exons on the folding stability of apo CBD1 in NCX3-CBD12, where the dynamic differences become less noticeable in the Ca2+-bound state. Therefore, the apo forms predefine incremental changes in backbone dynamics upon Ca2+ binding. These observations may account for slower inactivation (caused by slower dissociation of occluded Ca2+ from CBD12) in the skeletal vs the brain-expressed NCX2 and NCX3 variants. This may have physiological relevance, since NCX must extrude much higher amounts of Ca2+ from the skeletal cell than from the neuron.
机译:哺乳动物Na + / Ca 2 + 交换子NCX1和NCX3生成剪接变体,而NCX2则不。 CBD1和CBD2域形成调节级联(CBD12),其中Ca 2 + 与CBD1的结合被激活,而Ca 2 + 与CBD2的结合(带有剪接段)则减轻了Na + 诱导的失活。在这里,通过小角度X射线散射(SAXS)和氢氘交换质谱(HDX-MS)分析了NCX2-CBD12,NCX3-CBD12-B和NCX3-CBD12-AC蛋白,以解决监管差异在NCX2和NCX3变体中。 SAXS揭示了统一的模型,根据该模型,与CBD12结合的Ca 2 + 改变了动态平衡,而不会产生新的构象状态,并且更刚性的构象状态变得更密集,而没有任何全局构象变化。 HDX-MS揭示了B和AC外显子对apo CBD1在NCX3-CBD12中折叠稳定性的不同影响,在Ca 2 + 结合状态下动态差异变得不那么明显。因此,载脂蛋白形式预定义Ca 2 + 结合后骨架动力学的增量变化。这些观察结果可能解释了骨骼表达与大脑表达的NCX2和NCX3变异体中失活较慢的原因(由于CBD12中被封闭的Ca 2 + 的解离较慢)。这可能与生理相关,因为NCX必须从骨骼细胞中挤出比神经元中大量的Ca 2 +

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