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首页> 外文期刊>Journal of Molecular Biology >Structure, function, and dynamics of the dimerization and DNA-binding domain of oncogenic transcription factor v-Myc
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Structure, function, and dynamics of the dimerization and DNA-binding domain of oncogenic transcription factor v-Myc

机译:致癌转录因子v-Myc的二聚化和DNA结合域的结构,功能和动力学

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摘要

The protein product (c-Myc) of the protooncogene c-myc is a transcriptional regulator playing a key role in cellular growth, differentiation, and apoptosis. Deregulated myc genes, like the transduced retroviral v-myc allele, are oncogenic and cause cell transformation. The C-terminal bHLHZip domain of v-Myc, encompassing protein dimerization (helix-loop-helix, leucine zipper) and DNA contact (basic region) surfaces, was expressed in bacteria as a highly soluble p15(v-myc) recombinant protein. Dissociation constants (K-d) for the heterodimer formed with the recombinant bHLHZip domain of the Myc binding partner Max (p14(max)) and for the Myc-Max-DNA complex were estimated using circular dichroism (CD) spectroscopy and quantitative electrophoretic mobility shift assay (EMSA). Multi-dimensional NMR spectroscopy was used to characterize the solution structural and dynamic properties of the v-Myc bHLHZip domain. Significant secondary chemical shifts indicate the presence of two separated a-helical regions. The C-terminal leucine zipper region forms a compact alpha -helix, while the N-terminal basic region exhibits conformational averaging with substantial. alpha -helical content. Both helices lack stabilizing tertiary side-chain interactions and represent exceptional examples for loosely coupled secondary structural segments in a native protein. These results and CD thermal denaturation data indicate a monomeric state of the v-Myc bHLHZip domain. The N-15 relaxation data revealed backbone mobilities which corroborate the existence of a partially folded state, and suggest a "beads-on-a-string'' motional behaviour of the v-Myc bHLHZip domain in solution. The preformation of alpha -helical regions was confirmed by CD thermal denaturation studies, and quantification of the entropy changes caused by the hydrophobic effect and the reduction of conformational entropy upon protein dimerization. The restricted conformational space of the v-Myc bHLHZip domain reduces the entropy penalty associated with heterodimerization and allows rapid and accurate recognition by the authentic Myc binding partner Max. (C) 2001 Academic Press. [References: 79]
机译:原癌基因c-myc的蛋白质产物(c-Myc)是在细胞生长,分化和凋亡中起关键作用的转录调节因子。像转导的逆转录病毒v-myc等位基因一样,失调的myc基因是致癌的,并引起细胞转化。 v-Myc的C端bHLHZip域包含蛋白二聚化(螺旋-环-螺旋,亮氨酸拉链)和DNA接触(碱性区域)表面,在细菌中以高可溶性p15(v-myc)重组蛋白表达。使用圆二色性(CD)光谱和定量电泳迁移率位移测定法估算与Myc结合伴侣Max(p14(max))的重组bHLHZip域形成的异二聚体和Myc-Max-DNA复合物的解离常数(Kd)。 (EMSA)。多维NMR光谱用于表征v-Myc bHLHZip域的溶液结构和动力学性质。显着的二次化学位移表明存在两个分开的α-螺旋区域。 C末端亮氨酸拉链区域形成紧密的α-螺旋,而N末端碱性区域显示构象平均。 alpha螺旋内容。这两个螺旋都缺乏稳定的三级侧链相互作用,并且代表了天然蛋白质中松散偶联的二级结构片段的杰出实例。这些结果和CD热变性数据表明v-Myc bHLHZip结构域的单体状态。 N-15弛豫数据揭示了骨架运动,该运动证实了部分折叠状态的存在,并暗示了溶液中v-Myc bHLHZip域的“串珠”运动行为。 CD热变性研究证实了这些区域,并定量了疏水作用和蛋白质二聚化时构象熵的减少所引起的熵变; v-Myc bHLHZip域的受限构象空间减少了与异二聚化有关的熵损失,并允许真正的Myc绑定伙伴快速而准确地识别出Max。(C)2001 Academic Press。[References:79]

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