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MyoD uses overlapping but distinct elements to bind E-box and tetraplex structures of regulatory sequences of muscle-specific genes

机译:MyoD使用重叠但截然不同的元素结合肌肉特异性基因调节序列的E-box和四重结构

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摘要

Muscle differentiation and expression of muscle-specific proteins are initiated by the binding of heterodimers of the transcription factor MyoD with E2A proteins to E-box motif d(CANNTG) in promoters or enhancers of muscle-specific genes. MyoD homodimers, however, form tighter complexes with tetraplex structures of guanine-rich regulatory sequences of some muscle genes. In this work, we identified elements in MyoD that bind E-box or tetraplex structures of promoter sequences of the muscle-specific genes α7 integrin and sarcomeric Mitochondrial Creatine Kinase (sMtCK). Deletions of large domains of the 315 amino acids long recombinant MyoD indicated that the binding site for both E-box and tetraplex DNA is its basic region KRKTTNADRRKAATMRERRR that encompasses the three underlined clusters of basic residues designated R1, R2 and R3. Deletion of a single or pairs of R triads or R111C substitution completely abolished the E-box-binding capacity of MyoD. By contrast, the MyoD deletion mutants Δ102–114, ΔR3, ΔR1R3 or ΔR2R3 maintained comparable tetraplex DNA-binding capacity as reflected by the similar dissociation constants of their protein–DNA complexes. Only deletion of all three basic clusters abolished the binding of tetraplex DNA. Implications of the binding of E-box and tetraplex DNA by non-identical MyoD elements are considered.
机译:肌肉分化和肌肉特异性蛋白的表达是通过转录因子MyoD与E2A蛋白的异二聚体与肌肉特异性基因的启动子或增强子中的E-box基序d(CANNTG)结合而开始的。但是,MyoD同型二聚体与某些肌肉基因中富含鸟嘌呤的调控序列的四重体结构形成更紧密的复合体。在这项工作中,我们确定了MyoD中与肌肉特异性基因α7整合素和肌节线粒体肌酸激酶(sMtCK)的启动子序列的E-box或四重结构结合的元件。 315个氨基酸长的重组MyoD的大域缺失表明,E-box和四重体DNA的结合位点是其基本区域KRKTTNADRRKAATMRERRR,该区域包含三个带下划线的基本残基簇,分别为R1,R2和R3。删除单个或成对的R三联体或R111C取代完全消除了MyoD的E-box结合能力。相比之下,MyoD缺失突变体Δ102–114,ΔR3,ΔR1R3或ΔR2R3保持了相当的四链体DNA结合能力,这由它们的蛋白质-DNA复合体的相似解离常数所反映。只有全部三个基本簇的缺失才消除了四链体DNA的结合。考虑了E-box和四重体DNA通过不同的MyoD元件结合的含义。

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