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玉米染色体HMGB1蛋白的基本N端结构域与酸性C端结构域的相互作用。

Interactions of the basic N-terminal and the acidic C-terminal domains of the maize chromosomal HMGB1 protein.

作者信息

Thomsen Malene S, Franssen Lars, Launholt Dorte, Fojan Peter, Grasser Klaus D

机构信息

Institute of Life Sciences, Aalborg University, Sohngaardsholmsvej 49, DK-9000 Aalborg, Denmark.

出版信息

Biochemistry. 2004 Jun 29;43(25):8029-37. doi: 10.1021/bi0499009.

Abstract

Maize HMGB1 is a typical member of the family of plant chromosomal HMGB proteins, which have a central high-mobility group (HMG)-box DNA-binding domain that is flanked by a basic N-terminal region and a highly acidic C-terminal domain. The basic N-terminal domain positively influences various DNA interactions of the protein, while the acidic C-terminal domain has the opposite effect. Using DNA-cellulose binding and electrophoretic mobility shift assays, we demonstrate that the N-terminal basic domain binds DNA by itself, consistent with its positive effects on the DNA interactions of HMGB1. To examine whether the negative effect of the acidic C-terminal domain is brought about by interactions with the basic part of HMGB1 (N-terminal region, HMG-box domain), intramolecular cross-linking in combination with formic acid cleavage of the protein was used. These experiments revealed that the acidic C-terminal domain interacts with the basic N-terminal domain. The intramolecular interaction between the two oppositely charged termini of the protein is enhanced when serine residues in the acidic tail of HMGB1 are phosphorylated by protein kinase CK2, which can explain the negative effect of the phosphorylation on certain DNA interactions. In line with that, covalent cross-linking of the two terminal domains resulted in a reduced affinity of HMGB1 for linear DNA. Comparable to the finding with maize HMGB1, the basic N-terminal and the acidic C-terminal domains of the Arabidopsis HMGB1 and HMGB4 proteins interact, indicating that these intramolecular interactions, which can modulate HMGB protein function, generally occur in plant HMGB proteins.

摘要

玉米高迁移率族蛋白B1(HMGB1)是植物染色体HMGB蛋白家族的典型成员,该家族蛋白具有一个位于中央的高迁移率族(HMG)-盒DNA结合结构域,其两侧分别是碱性的N端区域和高度酸性的C端结构域。碱性的N端结构域对该蛋白的各种DNA相互作用产生正向影响,而酸性的C端结构域则具有相反的作用。通过DNA-纤维素结合和电泳迁移率变动分析,我们证明N端碱性结构域自身就能结合DNA,这与其对HMGB1的DNA相互作用的正向影响一致。为了研究酸性C端结构域的负面影响是否是通过与HMGB1的碱性部分(N端区域、HMG-盒结构域)相互作用而产生的,我们采用了分子内交联结合蛋白甲酸裂解的方法。这些实验表明酸性C端结构域与碱性N端结构域相互作用。当HMGB1酸性尾部的丝氨酸残基被蛋白激酶CK2磷酸化时,该蛋白两个带相反电荷末端之间的分子内相互作用增强,这可以解释磷酸化对某些DNA相互作用的负面影响。与此一致的是,两个末端结构域的共价交联导致HMGB1对线性DNA的亲和力降低。与玉米HMGB1的研究结果类似,拟南芥HMGB1和HMGB4蛋白的碱性N端和酸性C端结构域也相互作用,这表明这些能够调节HMGB蛋白功能的分子内相互作用通常存在于植物HMGB蛋白中。

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