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An 18-kDa translocator protein (TSPO) polymorphism explains differences in binding affinity of the PET radioligand PBR28

机译:18 kDa转运蛋白(TSPO)多态性解释了PET放射性配体PBR28结合亲和力的差异

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摘要

[(11)C]PBR28 binds the 18-kDa Translocator Protein (TSPO) and is used in positron emission tomography (PET) to detect microglial activation. However, quantitative interpretations of signal are confounded by large interindividual variability in binding affinity, which displays a trimodal distribution compatible with a codominant genetic trait. Here, we tested directly for an underlying genetic mechanism to explain this. Binding affinity of PBR28 was measured in platelets isolated from 41 human subjects and tested for association with polymorphisms in TSPO and genes encoding other proteins in the TSPO complex. Complete agreement was observed between the TSPO Ala147Thr genotype and PBR28 binding affinity phenotype (P value=3.1 × 10(-13)). The TSPO Ala147Thr polymorphism predicts PBR28 binding affinity in human platelets. As all second-generation TSPO PET radioligands tested hitherto display a trimodal distribution in binding affinity analogous to PBR28, testing for this polymorphism may allow quantitative interpretation of TSPO PET studies with these radioligands.
机译:[(11)C] PBR28结合18 kDa转运蛋白(TSPO),并用于正电子发射断层扫描(PET)中以检测小胶质细胞的激活。然而,信号的定量解释被结合亲和力的较大个体间差异所混淆,该变异显示出与共有遗传特性兼容的三峰分布。在这里,我们直接测试了潜在的遗传机制来解释这一点。在分离自41个人类受试者的血小板中测量了PBR28的结合亲和力,并测试了其与TSPO中的多态性和TSPO复合物中编码其他蛋白质的基因的关联。 TSPO Ala147Thr基因型与PBR28结合亲和力表型之间完全一致(P值= 3.1×10(-13))。 TSPO Ala147Thr多态性预测人血小板中PBR28的结合亲和力。到目前为止,由于测试的所有第二代TSPO PET放射性配体在结合亲和力上均表现出三峰分布,类似于PBR28,因此对该多态性进行测试可能可以定量解释使用这些放射性配体的TSPO PET研究。

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