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Basic and acidic regions flanking the HMG domain of maize HMGa modulate the interactions with DNA and the self-association of the protein

机译:玉米HMGA HMG结构域两侧的碱性和酸性区域调节与DNA的相互作用和蛋白质的自缔合

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摘要

The maize HMGa protein is a typical member of the family of plant chromosomal HMG1-like proteins. The HMG domain of HMGa is flanked by a basic N-terminal domain characteristic for plant HMG1-like proteins, and is linked to the acidic C-terminal domain by a short basic region. Various derivatives of the HMGa protein were expressed in Escherichia coli and purified. The individual HMG domain can functionally complement the defect of the HLT-like chromatin-associated Hbsu protein in Bacillus subtilis. The basic N-terminal domain which contacts DNA enhances the affinity of the protein for linear DNA, whereas it has little effect on the structure-specific binding to DNA minicircles. The acidic C-terminal domain reduces the affinity of HMGa for linear DNA, but does not affect to the same extent the recognition of DNA structure which is an intrinsic property of the HMG domain. The efficiency of the HMGa constructs to facilitate circularization of short DNA fragments in the presence of DNA ligase is like the binding to linear DNA altered by the basic and acidic domains flanking the HMG domain, while the supercooling activity of HMGa is only slightly influenced by the same regions, Both the basic N-terminal and thf: acidic C-terminal domains contribute directly to the self-association of HMGa in the presence of DNA. Collectively, these findings suggest that the intrinsic properties of the HMG domain can be modulated within the HMGa protein by the basic and acidic domains. [References: 74]
机译:玉米HMGa蛋白是植物染色体HMG1样蛋白家族的典型成员。 HMGa的HMG结构域的侧翼是植物HMG1样蛋白的基本N末端结构域特征,并通过短的碱性区域与酸性C末端结构域连接。 HMGa蛋白的各种衍生物在大肠杆菌中表达并纯化。单个HMG域可以在功能上弥补枯草芽孢杆菌中HLT样染色质相关Hbsu蛋白的缺陷。与DNA接触的基本N末端结构域增强了蛋白质对线性DNA的亲和力,而对与DNA小环的结构特异性结合几乎没有影响。酸性的C末端结构域降低了HMGa对线性DNA的亲和力,但是在相同程度上不影响DNA结构的识别,DNA结构是HMG结构域的固有特性。 HMGa构建体在存在DNA连接酶的情况下促进短DNA片段环化的效率就像是与线性DNA的结合被HMG域旁的碱性和酸性域所改变,而HMGa的过冷活性仅受HMG域的轻微影响。在DNA的存在下,基本的N末端和thf:酸性C末端结构域都直接参与HMGa的自缔合。总而言之,这些发现表明,HMG结构域的内在特性可以通过碱性和酸性结构域在HMGa蛋白内调节。 [参考:74]

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