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如用合成肽建模所示,人p53 C端位点的磷酸化会降低非序列特异性DNA结合。

Phosphorylation of the C-terminal sites of human p53 reduces non-sequence-specific DNA binding as modeled with synthetic peptides.

作者信息

Hoffmann R, Craik D J, Pierens G, Bolger R E, Otvos L

机构信息

The Wistar Institute, Philadelphia, Pennsylvania 19104, USA.

出版信息

Biochemistry. 1998 Sep 29;37(39):13755-64. doi: 10.1021/bi980760a.

DOI:10.1021/bi980760a
PMID:9753464
Abstract

Phosphorylation of the tumor suppressor p53 is generally thought to modify the properties of the protein in four of its five independent domains. We used synthetic peptides to directly study the effects of phosphorylation on the non-sequence-specific DNA binding and conformation of the C-terminal, basic domain. The peptides corresponded to amino acids 361-393 and were either nonphosphorylated or phosphorylated at the protein kinase C (PKC) site, Ser378, or the casein kinase II (CKII) site, Ser392, or bis-phosphorylated on both the PKC and the CKII sites. A fluorescence polarization analysis revealed that either the recombinant p53 protein or the synthetic peptides bound to two unrelated target DNA fragments. Phosphorylation of the peptide at the PKC or the CKII sites clearly decreased DNA binding, and addition of a second phosphate group almost completely abolished binding. Circular dichroism spectroscopy showed that the peptides assumed identical unordered structures in aqueous solutions. The unmodified peptide, unlike the Ser378 phosphorylated peptide, changed conformation in the presence of DNA. The inherent ability of the peptides to form an alpha-helix could be detected when circular dichroism and nuclear magnetic resonance spectra were taken in trifluoroethanol-water mixtures. A single or double phosphorylation destabilized the helix around the phosphorylated Ser378 residue but stabilized the helix downstream in the sequence.

摘要

一般认为,肿瘤抑制因子p53的磷酸化会改变其五个独立结构域中四个结构域的蛋白质特性。我们使用合成肽直接研究磷酸化对C末端碱性结构域的非序列特异性DNA结合和构象的影响。这些肽对应于氨基酸361 - 393,要么未磷酸化,要么在蛋白激酶C(PKC)位点Ser378、酪蛋白激酶II(CKII)位点Ser392处磷酸化,或者在PKC和CKII位点都进行双磷酸化。荧光偏振分析表明,重组p53蛋白或合成肽与两个不相关的靶DNA片段结合。肽在PKC或CKII位点的磷酸化明显降低了DNA结合能力,而添加第二个磷酸基团几乎完全消除了结合。圆二色光谱显示,这些肽在水溶液中呈现相同的无序结构。与Ser378磷酸化的肽不同,未修饰的肽在DNA存在时会改变构象。当在三氟乙醇 - 水混合物中进行圆二色光谱和核磁共振光谱分析时,可以检测到肽形成α - 螺旋的内在能力。单磷酸化或双磷酸化会使磷酸化的Ser378残基周围的螺旋不稳定,但会使序列下游的螺旋稳定。

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