首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Unique Regulatory Properties of Heterotetrameric Inositol 145-Trisphosphate Receptors Revealed by Studying Concatenated Receptor Constructs
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Unique Regulatory Properties of Heterotetrameric Inositol 145-Trisphosphate Receptors Revealed by Studying Concatenated Receptor Constructs

机译:通过研究级联的受体构建体揭示了异四聚肌醇145-三磷酸受体的独特调控特性。

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摘要

The ability of inositol 1,4,5-trisphosphate receptors (IP3R) to precisely initiate and generate a diverse variety of intracellular Ca2+ signals is in part mediated by the differential regulation of the three subtypes (R1, R2, and R3) by key functional modulators (IP3, Ca2+, and ATP). However, the contribution of IP3R heterotetramerization to Ca2+ signal diversity has largely been unexplored. In this report, we provide the first definitive biochemical evidence of endogenous heterotetramer formation. Additionally, we examine the contribution of individual subtypes within defined concatenated heterotetramers to the shaping of Ca2+ signals. Under conditions where key regulators of IP3R function are optimal for Ca2+ release, we demonstrate that individual monomers within heteromeric IP3Rs contributed equally toward generating a distinct 'blended' sensitivity to IP3 that is likely dictated by the unique IP3 binding affinity of the heteromers. However, under suboptimal conditions where [ATP] were varied, we found that one subtype dictated the ATP regulatory properties of heteromers. We show that R2 monomers within a heterotetramer were both necessary and sufficient to dictate the ATP regulatory properties. Finally, the ATP-binding site B in R2 critical for ATP regulation was mutated and rendered non-functional to address questions relating to the stoichiometry of IP3R regulation. Two intact R2 monomers were sufficient to maintain ATP regulation in R2 homotetramers. In summary, we demonstrate that heterotetrameric IP3R do not necessarily behave as the sum of the constituent subunits, and these properties likely extend the versatility of IP3-induced Ca2+ signaling in cells expressing multiple IP3R isoforms.
机译:肌醇1,4,5-三磷酸受体(IP3R)精确启动并产生多种细胞内Ca 2 + 信号的能力部分受三种亚型(R1 ,R2和R3)通过关键功能调制器(IP3,Ca 2 + 和ATP)。然而,IP3R异四聚体对Ca 2 + 信号多样性的贡献尚待探索。在本报告中,我们提供了内源异四聚体形成的第一个明确的生化证据。此外,我们研究了定义的级联异四聚体中单个亚型对Ca 2 + 信号形成的贡献。在IP3R功能的关键调节剂最适合Ca 2 + 释放的条件下,我们证明了异聚IP3R中的各个单体均对产生对IP3的独特“混合”敏感性做出了同等贡献,这可能是由独特的异聚体的IP3结合亲和力。但是,在[ATP]变化的次优条件下,我们发现一种亚型决定了异聚体的ATP调节特性。我们表明,异四聚体中的R2单体既必要也足以决定ATP调节性能。最后,突变了R2中对ATP调节至关重要的ATP结合位点B,使其失去功能,以解决与IP3R调节的化学计量有关的问题。两个完整的R2单体足以维持R2同四聚体中的ATP调节。总而言之,我们证明了异四聚体IP3R不一定表现为组成亚基的总和,并且这些特性可能扩展了IP3诱导的Ca3 +2 + 信号在表达多种IP3R同工型的细胞中的多功能性。

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