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胞质膜相关鸟苷酸激酶(MAGUK)神经元蛋白PSD-95的第三个PDZ结构域的域外结构和翻译后修饰对其折叠/错误折叠行为的影响

The impact of extra-domain structures and post-translational modifications in the folding/misfolding behaviour of the third PDZ domain of MAGUK neuronal protein PSD-95.

作者信息

Murciano-Calles Javier, Marin-Argany Marta, Cobos Eva S, Villegas Sandra, Martinez Jose C

机构信息

Departamento de Química Física e Instituto de Biotecnología, Facultad de Ciencias, Universidad de Granada, Granada, Spain.

Departament de Bioquímica i Biología Molecular, Facultat de Biociències, Universitat Autónoma de Barcelona, Barcelona, Spain.

出版信息

PLoS One. 2014 May 20;9(5):e98124. doi: 10.1371/journal.pone.0098124. eCollection 2014.

Abstract

The modulation of binding affinities and specificities by post-translational modifications located out from the binding pocket of the third PDZ domain of PSD-95 (PDZ3) has been reported recently. It is achieved through an intra-domain electrostatic network involving some charged residues in the β2-β3 loop (were a succinimide modification occurs), the α3 helix (an extra-structural element that links the PDZ3 domain with the following SH3 domain in PSD-95, and contains the phosphorylation target Tyr397), and the ligand peptide. Here, we have investigated the main structural and thermodynamic aspects that these structural elements and their related post-translational modifications display in the folding/misfolding pathway of PDZ3 by means of site-directed mutagenesis combined with calorimetry and spectroscopy. We have found that, although all the assayed mutations generate proteins more prone to aggregation than the wild-type PDZ3, those directly affecting the α3 helix, like the E401R substitution or the truncation of the whole α3 helix, increase the population of the DSC-detected intermediate state and the misfolding kinetics, by organizing the supramacromolecular structures at the expense of the two β-sheets present in the PDZ3 fold. However, those mutations affecting the β2-β3 loop, included into the prone-to-aggregation region composed by a single β-sheet comprising β2 to β4 chains, stabilize the trimeric intermediate previously shown in the wild-type PDZ3 and slow-down aggregation, also making it partly reversible. These results strongly suggest that the α3 helix protects to some extent the PDZ3 domain core from misfolding. This might well constitute the first example where an extra-element, intended to link the PDZ3 domain to the following SH3 in PSD-95 and in other members of the MAGUK family, not only regulates the binding abilities of this domain but it also protects PDZ3 from misfolding and aggregation. The influence of the post-translational modifications in this regulatory mechanism is also discussed.

摘要

最近有报道称,位于突触后密度蛋白95(PSD - 95)第三个PDZ结构域(PDZ3)结合口袋之外的翻译后修饰对结合亲和力和特异性具有调节作用。这是通过一个结构域内的静电网络实现的,该网络涉及β2 - β3环(琥珀酰亚胺修饰发生在此处)、α3螺旋(连接PSD - 95中PDZ3结构域与后续SH3结构域的一个额外结构元件,包含磷酸化靶点Tyr397)以及配体肽中的一些带电荷残基。在此,我们通过定点诱变结合量热法和光谱法,研究了这些结构元件及其相关翻译后修饰在PDZ3折叠/错误折叠途径中展现出的主要结构和热力学方面。我们发现,尽管所有检测的突变都使蛋白质比野生型PDZ3更易于聚集,但那些直接影响α3螺旋的突变,如E401R替换或整个α3螺旋的截断,通过以PDZ3折叠中存在的两个β折叠为代价来组织超分子结构,增加了差示扫描量热法(DSC)检测到的中间态群体和错误折叠动力学。然而,那些影响β2 - β3环的突变,包含在由包含β2至β4链的单个β折叠组成的易于聚集区域内,稳定了先前在野生型PDZ3中显示的三聚体中间体并减缓了聚集,还使其部分可逆。这些结果强烈表明,α3螺旋在一定程度上保护PDZ3结构域核心免于错误折叠。这很可能构成第一个例子,即一个旨在将PDZ3结构域与PSD - 95及MAGUK家族其他成员中的后续SH3连接的额外元件,不仅调节该结构域的结合能力,还保护PDZ3免于错误折叠和聚集。本文还讨论了翻译后修饰在这种调节机制中的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/56f7/4028313/d46125e24287/pone.0098124.g001.jpg

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