首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Noncanonical Role of the PDZ4 Domain of the Adaptor Protein PDZK1 in the Regulation of the Hepatic High Density Lipoprotein Receptor Scavenger Receptor Class B Type I (SR-BI)
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Noncanonical Role of the PDZ4 Domain of the Adaptor Protein PDZK1 in the Regulation of the Hepatic High Density Lipoprotein Receptor Scavenger Receptor Class B Type I (SR-BI)

机译:衔接蛋白PDZK1的PDZ4结构域在肝脏高密度脂蛋白受体清除剂受体B类(I型SR-BI)的调节中的非规范作用

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摘要

The four PDZ (PDZ1 to PDZ4) domain-containing adaptor protein PDZK1 controls the expression, localization, and function of the HDL receptor scavenger receptor class B, type I (SR-BI), in hepatocytes in vivo. This control depends on both the PDZ4 domain and the binding of SR-BI's cytoplasmic C terminus to the canonical peptide-binding sites of either the PDZ1 or PDZ3 domain (no binding to PDZ2 or PDZ4). Using transgenic mice expressing in the liver domain deletion (ΔPDZ2 or ΔPDZ3), domain replacement (PDZ2→1), or target peptide binding-negative (PDZ4(G389P)) mutants of PDZK1, we found that neither PDZ2 nor PDZ3 nor the canonical target peptide binding activity of PDZ4 were necessary for hepatic SR-BI regulatory activity. Immunohistochemical studies established that the localization of PDZK1 on hepatocyte cell surface membranes in vivo is dependent on its PDZ4 domain and the presence of SR-BI. Analytical ultracentrifugation and hydrogen deuterium exchange mass spectrometry suggested that the requirement of PDZ4 for localization and SR-BI regulation is not due to PDZ4-mediated oligomerization or induction of conformational changes in the PDZ123 portion of PDZK1. However, surface plasmon resonance analysis showed that PDZ4, but not the other PDZ domains, can bind vesicles that mimic the plasma membrane. Thus, PDZ4 may potentiate PDZK1's regulation of SR-BI by promoting its lipid-mediated attachment to the cytoplasmic membrane. Our results show that not all of the PDZ domains of a multi-PDZ domain-containing adaptor protein are required for its biological activities and that both canonical target peptide binding and noncanonical (peptide binding-independent) capacities of PDZ domains may be employed by a single such adaptor for optimal in vivo activity.
机译:包含四个PDZ(PDZ1至PDZ4)域的衔接子蛋白PDZK1控制着HDL受体清除剂受体B类I型(SR-BI)在体内肝细胞中的表达,定位和功能。该控制既取决于PDZ4结构域,也取决于SR-BI的胞质C末端与PDZ1或PDZ3结构域的规范肽结合位点的结合(不与PDZ2或PDZ4结合)。使用在肝结构域缺失(ΔPDZ2或ΔPDZ3),结构域替换(PDZ2→1)或PDZK1的靶肽结合阴性(PDZ4(G389P))突变体中表达的转基因小鼠,我们发现PDZ2或PDZ3或规范靶点都没有PDZ4的肽结合活性对于肝SR-BI调节活性是必需的。免疫组织化学研究表明,PDZK1在体内肝细胞表面膜上的定位取决于其PDZ4结构域和SR-BI的存在。分析超速离心和氢氘交换质谱表明,PDZ4对定位和SR-BI调节的要求不是由于PDZ4介导的低聚或诱导PDZK1的PDZ123部分发生构象变化。然而,表面等离振子共振分析表明PDZ4,而不是其他PDZ域,可以结合模拟质膜的囊泡。因此,PDZ4可以通过促进其脂质介导的附着到细胞质膜上来增强PDZK1对SR-BI的调节。我们的结果表明,并非所有含多个PDZ结构域的衔接蛋白都具有其PDZ结构域的生物学活性,并且PDZ结构域的规范靶标肽结合能力和非规范性(肽结合独立性)能力都可以被PDZ结构域利用。单个这样的衔接子以获得最佳的体内活性。

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