Synergic Role of Nucleophosmin Three-helix Bundle and a Flanking Unstructured Tail in the Interaction with G-quadruplex DNA

被引:18
作者
Arcovito, Alessandro [1 ]
Chiarella, Sara [2 ,3 ]
Della Longa, Stefano [4 ]
Di Matteo, Adele [5 ]
Lo Sterzo, Carlo [3 ]
Scaglione, Giovanni Luca [1 ]
Federici, Luca [2 ,6 ]
机构
[1] Univ Cattolica Sacro Cuore, Ist Biochim & Biochim Clin, I-00168 Rome, Italy
[2] Fdn Univ DAnnunzio, CeSI Ctr Sci Invecchiamento, I-66013 Chieti, Italy
[3] Univ Roma La Sapienza, Dipartimento Sci Biochim, I-00185 Rome, Italy
[4] Univ Aquila, Dipartimento Med Clin Sanita Pubbl Sci Vita & Amb, I-67100 Laquila, Italy
[5] CNR, Ist Biol Med Mol & NanoBiotecnol, I-00185 Rome, Italy
[6] Univ G dAnnunzio, Dipartimento Sci Sperimentali & Clin, I-66013 Chieti, Italy
关键词
C-TERMINAL DOMAIN; DENATURED STATE; MOLECULAR-DYNAMICS; NUCLEOLAR PROTEIN; RIBOSOMAL-RNA; LEUKEMIA; COMPLEX; BINDING; RECOGNITION; MUTATIONS;
D O I
10.1074/jbc.M114.565010
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Nucleophosmin (NPM1) is a nucleocytoplasmic shuttling protein, mainly localized at nucleoli, that plays a number of functions in ribosome biogenesis and export, cell cycle control, and response to stress stimuli. NPM1 is the most frequently mutated gene in acute myeloid leukemia; mutations map to the C-terminal domain of the protein and cause its denaturation and aberrant cytoplasmic translocation. NPM1 C-terminal domain binds G-quadruplex regions at ribosomal DNA and at gene promoters, including the well characterized sequence from the nuclease-hypersensitive element III region of the c-MYC promoter. These activities are lost by the leukemic variant. Here we analyze the NPM1/G-quadruplex interaction, focusing on residues belonging to both the NPM1 terminal three-helix bundle and a lysine-rich unstructured tail, which has been shown to be necessary for high affinity recognition. We performed extended site-directed mutagenesis and measured binding rate constants through surface plasmon resonance analysis. These data, supported by molecular dynamics simulations, suggest that the unstructured tail plays a double role in the reaction mechanism. On the one hand, it facilitates the formation of an encounter complex through long range electrostatic interactions; on the other hand, it directly contacts the G-quadruplex scaffold through multiple and transient electrostatic interactions, significantly enlarging the contact surface.
引用
收藏
页码:21230 / 21241
页数:12
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