首页> 美国卫生研究院文献>Molecular Pharmacology >Binding of Inositol 145-trisphosphate (IP3) and Adenophostin A to the N-Terminal region of the IP3 Receptor: Thermodynamic Analysis Using Fluorescence Polarization with a Novel IP3 Receptor Ligand
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Binding of Inositol 145-trisphosphate (IP3) and Adenophostin A to the N-Terminal region of the IP3 Receptor: Thermodynamic Analysis Using Fluorescence Polarization with a Novel IP3 Receptor Ligand

机译:肌醇145-三磷酸(IP3)与腺苷结合 A至IP3受体的N末端区域:热力学分析 使用新型IP3受体配体的荧光偏振

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摘要

Inositol 1,4,5-trisphosphate (IP3) receptors (IP3R) are intracellular Ca2+ channels. Their opening is initiated by binding of IP3 to the IP3-binding core (IBC; residues 224–604 of IP3R1) and transmitted to the pore via the suppressor domain (SD; residues 1–223). The major conformational changes leading to IP3R activation occur within the N terminus (NT; residues 1–604). We therefore developed a high-throughput fluorescence polarization (FP) assay using a newly synthesized analog of IP3, fluorescein isothiocyanate (FITC)-IP3, to examine the thermodynamics of IP3 and adenophostin A binding to the NT and IBC. Using both single-channel recording and the FP assay, we demonstrate that FITC-IP3 is a high-affinity partial agonist of the IP3R. Conventional [3H]IP3 and FP assays provide similar estimates of the KD for both IP3 and adenophostin A in cytosol-like medium at 4°C. They further establish that the isolated IBC retains the ability of full-length IP3R to bind adenophostin A with ∼10-fold greater affinity than IP3. By examining the reversible effects of temperature on ligand binding, we established that favorable entropy changes (TΔS) account for the greater affinities of both ligands for the IBC relative to the NT and for the greater affinity of adenophostin A relative to IP3. The two agonists differ more substantially in the relative contribution of ΔH and TΔS to binding to the IBC relative to the NT. This suggests that different initial binding events drive the IP3R on convergent pathways toward a similar open state.
机译:肌醇1,4,5-三磷酸(IP3)受体(IP3R)是细胞内Ca 2 + 通道。它们的开放是通过IP3与IP3结合核心(IBC; IP3R1的残基224–604)的结合而开始的,并通过抑制域(SD;残基1–223)传递到孔中。导致IP3R激活的主要构象变化发生在N末端(NT;残基1–604)。因此,我们使用新合成的IP3类似物,异硫氰酸荧光素(FITC)-IP3,开发了一种高通量荧光偏振(FP)测定法,以检查IP3和腺苷A与NT和IBC结合的热力学。使用单通道记录和FP分析,我们证明FITC-IP3是IP3R的高亲和力部分激动剂。常规的[ 3 H] IP3和FP测定法可在4°C时在胞质样介质中对IP3和腺苷A的KD进行相似的估算。他们进一步确定,分离的IBC保留了全长IP3R以比IP3高约10倍的亲和力结合腺苷A的能力。通过检查 温度对配体结合的可逆影响,我们确定 熵变(TΔS)解释了 相对于NT,两种配体对IBC的亲和力都更大 腺苷A对IP 3 的亲和力。两种激动剂的差异更大 基本上在ΔH和 TΔS与IBC亲戚的结合 到新台币。这表明不同的初始结合事件驱动了 IP 3 R趋于相似的开放状态。

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