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在急性髓系白血病相关的核仁磷酸蛋白(NPM)突变存在的情况下,p53寡聚状态与其亚细胞定位的相关性。

Correlation of p53 oligomeric status and its subcellular localization in the presence of the AML-associated NPM mutant.

作者信息

Holoubek Aleš, Strachotová Dita, Wolfová Kateřina, Otevřelova Petra, Belejová Sára, Röselová Pavla, Benda Aleš, Brodská Barbora, Herman Petr

机构信息

Department of Proteomics, Institute of Hematology and Blood Transfusion, Prague, Czech Republic.

Faculty of Mathematics and Physics, Institute of Physics, Charles University, Prague, Czech Republic.

出版信息

PLoS One. 2025 May 7;20(5):e0322096. doi: 10.1371/journal.pone.0322096. eCollection 2025.

Abstract

Tumor suppressor p53 is a key player in the cell response to DNA damage that suffers by frequent inactivating aberrations. Some of them disturb p53 oligomerization and influence cell decision between proliferation, growth arrest and apoptosis. Active p53 resides mostly in the nucleus, degradation occurs in the cytoplasm. Acute myeloid leukemia (AML)-related mutation of NPM (NPMmut) induces massive mislocalization of p53 to the cytoplasm, which might be related to leukemia initiation. Since both proteins interact and execute their function as oligomers, we investigated the role of perturbed p53 oligomerization in the p53 mislocalization process in live cells by FLIM (fluorescence lifetime imaging microscopy), fluorescence anisotropy imaging (FAIM), fluorescence cross-correlation spectroscopy (FCCS) and immunochemical methods. On a set of fluorescently labeled p53 variants, monomeric R337G and L344P, dimeric L344A, and multimeric D352G and A353S, we correlated their cellular localization, oligomerization and interaction with NPMmut. Interplay between nuclear export signal (NES) and nuclear localization signal (NLS) of p53 was investigated as well. While NLS was found critical for the nuclear p53 localization, NES plays less significant role. We observed cytoplasmic translocation only for multimeric A353S variant with sufficient stability and strong interaction with NPMmut. Less stable multimer D352G and L344A dimer were not translocated, monomeric p53 variants always resided in the nucleus independently of the presence of NPMmut and NES intactness. Oligomeric state of NPMmut is not required for p53 translocation, which happens also in the presence of the nonoligomerizing NPMmut variant. The prominent structural and functional role of the R337 residue is shown.

摘要

肿瘤抑制因子p53是细胞对DNA损伤反应中的关键因子,常因失活畸变而功能受损。其中一些畸变会干扰p53的寡聚化,并影响细胞在增殖、生长停滞和凋亡之间的抉择。活性p53主要位于细胞核中,而降解发生在细胞质中。急性髓系白血病(AML)相关的核仁磷酸蛋白(NPM)突变(NPMmut)会导致p53大量错误定位到细胞质中,这可能与白血病的起始有关。由于这两种蛋白相互作用并以寡聚体形式发挥功能,我们通过荧光寿命成像显微镜(FLIM)、荧光各向异性成像(FAIM)、荧光交叉相关光谱(FCCS)和免疫化学方法,研究了受干扰的p53寡聚化在活细胞中p53错误定位过程中的作用。在一组荧光标记的p53变体上,包括单体R337G和L344P、二聚体L344A以及多聚体D352G和A353S,我们将它们的细胞定位、寡聚化以及与NPMmut的相互作用进行了关联。同时还研究了p53的核输出信号(NES)和核定位信号(NLS)之间的相互作用。虽然发现NLS对p53的核定位至关重要,但NES的作用不太显著。我们仅观察到具有足够稳定性且与NPMmut有强相互作用的多聚体A353S变体发生了细胞质易位。稳定性较差的多聚体D352G和二聚体L344A没有发生易位,单体p53变体总是独立于NPMmut的存在和NES的完整性而位于细胞核中。p53易位不需要NPMmut的寡聚状态,在非寡聚化的NPMmut变体存在时也会发生易位。研究显示了R337残基突出的结构和功能作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b4d9/12058200/500bc586f413/pone.0322096.g001.jpg

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