首页> 美国卫生研究院文献>The EMBO Journal >Nine hydrophobic side chains are key determinants of the thermodynamic stability and oligomerization status of tumour suppressor p53 tetramerization domain.
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Nine hydrophobic side chains are key determinants of the thermodynamic stability and oligomerization status of tumour suppressor p53 tetramerization domain.

机译:九个疏水性侧链是肿瘤抑制因子p53四聚化域热力学稳定性和低聚状态的关键决定因素。

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摘要

The contribution of almost each amino acid side chain to the thermodynamic stability of the tetramerization domain (residues 326-353) of human p53 has been quantitated using 25 mutants with single-residue truncations to alanine (or glycine). Truncation of either Leu344 or Leu348 buried at the tetramer interface, but not of any other residue, led to the formation of dimers of moderate stability (8-9 kcal/mol of dimer) instead of tetramers. One-third of the substitutions were moderately destabilizing (<3.9 kcal/mol of tetramer). Truncations of Arg333, Asn345 or Glu349 involved in intermonomer hydrogen bonds, Ala347 at the tetramer interface or Thr329 were more destabilizing (4.1-5.7 kcal/mol). Strongly destabilizing (8.8- 11.7 kcal/mol) substitutions included those of Met340 at the tetramer interface and Phe328, Arg337 and Phe338 involved peripherally in the hydrophobic core. Truncation of any of the three residues involved centrally in the hydrophobic core of each primary dimer either prevented folding (Ile332) or allowed folding only at high protein concentration or low temperature (Leu330 and Phe341). Nine hydrophobic residues per monomer constitute critical determinants for the stability and oligomerization status of this p53 domain.
机译:几乎每个氨基酸侧链对人p53四聚化域(残基326-353)的热力学稳定性的贡献已使用25个具有单残基截短至丙氨酸(或甘氨酸)的突变体进行了定量。埋在四聚体界面上的Leu344或Leu348的截短,但没有其他残基的截短,导致形成了中等稳定性的二聚体(8-9 kcal / mol二聚体),而不是四聚体。三分之一的取代是中等不稳定的(<3.9 kcal / mol四聚体)。涉及单体间氢键的Arg333,Asn345或Glu349,四聚体界面处的Ala347或Thr329的截断更加不稳定(4.1-5.7 kcal / mol)。强烈破坏稳定性(8.8-11.7 kcal / mol)的取代基包括四聚体界面处的Met340取代基和疏水核心中周围涉及的Phe328,Arg337和Phe338。截断每个初级二聚体的疏水核心中心涉及的三个残基中的任何一个,均可以阻止折叠(Ile332)或仅在高蛋白浓度或低温下折叠(Leu330和Phe341)。每个单体有9个疏水残基构成了该p53结构域稳定性和低聚状态的关键决定因素。

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