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首页> 外文期刊>Biochemistry >DNA bending induced by high mobility group proteins studied by fluorescence resonance energy transfer.
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DNA bending induced by high mobility group proteins studied by fluorescence resonance energy transfer.

机译:高迁移率族蛋白诱导的DNA弯曲通过荧光共振能量转移进行研究。

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The HMG domains of the chromosomal high mobility group proteins homologous to the vertebrate HMG1 and HMG2 proteins preferentially recognize distorted DNA structures. DNA binding also induces a substantial bend. Using fluorescence resonance energy transfer (FRET), we have determined the changes in the end-to-end distance consequent on the binding of selected insect counterparts of HMG1 to two DNA fragments, one of 18 bp containing a single dA(2) bulge and a second of 27 bp with two dA(2) bulges. The observed changes are consistent with overall bend angles for the complex of the single HMG domain with one bulge and of two domains with two bulges of approximately 90-100 degrees and approximately 180-200 degrees, respectively. The former value contrasts with an inferred value of 150 degrees reported by Heyduk et al. (1) for the bend induced by a single domain. We also observe that the induced bend angle is unaffected by the presence of the C-terminal acidic region. The DNA bend of approximately 95 degrees observed in the HMG domain complexes is similar in magnitude to that induced by the TATA-binding protein (80 degrees), each monomeric unit of the integration host factor (80 degrees), and the LEF-1 HMG domain (107 degrees). We suggest this value may represent a steric limitation on the extent of DNA bending induced by a single DNA-binding motif.
机译:与脊椎动物HMG1和HMG2蛋白同源的染色体高迁移率族蛋白的HMG结构域优先识别扭曲的DNA结构。 DNA结合也引起实质性的弯曲。使用荧光共振能量转移(FRET),我们确定了HMG1的选定昆虫对应物与两个DNA片段的结合所导致的端到端距离的变化,其中18 bp的一个包含单个dA(2)凸起和每秒27 bp,带有两个dA(2)凸起。观察到的变化与单个HMG域具有一个凸起的复合体和两个域具有两个凸起的复合体的整体弯曲角相一致,分别为90-100度和180-200度。前一个值与Heyduk等人报道的150度的推断值形成对比。 (1)对于单个域引起的弯曲。我们还观察到,诱导的弯曲角度不受C端酸性区域的影响。在HMG结构域复合物中观察到的大约95度的DNA弯曲的强度与TATA结合蛋白(80度),整合宿主因子的每个单体单元(80度)和LEF-1 HMG诱导的弯曲程度相似。域(107度)。我们建议该值可能代表单个DNA结合基序诱导的DNA弯曲程度的空间限制。

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