首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >MyoD forms micelles which can dissociate to form heterodimers with E47: implications of micellization on function.
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MyoD forms micelles which can dissociate to form heterodimers with E47: implications of micellization on function.

机译:MyoD形成可与E47分离形成异二聚体的胶束:胶束化对功能的影响。

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摘要

MyoD is a member of a family of DNA-binding transcription factors that contain a helix-loop-helix (HLH) region involved in protein-protein interactions. In addition to self-association and DNA binding, MyoD associates with a number of other HLH-containing proteins, thereby modulating the strength and specificity of its DNA binding. Here, we examine the interactions of full-length MyoD with itself and with an HLH-containing peptide portion of an E2A gene product, E47-96. Analytical ultracentrifugation reveals that MyoD forms micelles that contain more than 100 monomers and are asymmetric and stable up to 36 degrees C. The critical micelle concentration increases slightly with temperature, but micelle size is unaffected. The micelles are in reversible equilibrium with monomer. Addition of E47-96 results in the stoichiometric formation of stable MyoD-E47-96 heterodimers and the depletion of micelles. Micelle formation effectively holds the concentration of free MyoD constant and equal to the critical micelle concentration. In the presence of micelles, the extent of all interactions involving free MyoD is independent of the total MyoD concentration and independent of one another. For DNA binding, the apparent relative specificity for different sites can be affected. In general, heterodimer-associated activities will depend on the self-association behavior of the partner protein.
机译:MyoD是DNA结合转录因子家族的成员,其包含参与蛋白质-蛋白质相互作用的螺旋-环-螺旋(HLH)区。除了自我缔合和DNA结合外,MyoD还与许多其他含HLH的蛋白质缔合,从而调节其DNA结合的强度和特异性。在这里,我们检查了全长MyoD与自身以及与E2A基因产物E47-96的含HLH的肽部分的相互作用。分析超速离心显示,MyoD形成的胶束包含100多个单体,在36摄氏度以下时不对称且稳定。临界胶束浓度随温度而略有增加,但胶束大小不受影响。胶束与单体处于可逆平衡。 E47-96的添加导致稳定的MyoD-E47-96异二聚体的化学计量形成和胶束的消耗。胶束的形成有效地使游离MyoD的浓度保持恒定,并等于临界胶束浓度。在存在胶束的情况下,涉及游离MyoD的所有相互作用的程度均独立于总MyoD浓度且彼此独立。对于DNA结合,可以影响不同位点的表观相对特异性。通常,异二聚体相关的活性将取决于伴侣蛋白的自缔合行为。

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