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隐甲藻属叶绿体基因hlpA的重组产物是一种具有结构功能的类HU蛋白,可促进复杂核蛋白结构的组装。

The recombinant product of the Chryptomonas phi plastid gene hlpA is an architectural HU-like protein that promotes the assembly of complex nucleoprotein structures.

作者信息

Grasser K D, Ritt C, Krieg M, Fernández S, Alonso J C, Grimm R

机构信息

Institut für Biologie III, Albert-Ludwigs-Universität Freiburg, Germany.

出版信息

Eur J Biochem. 1997 Oct 1;249(1):70-6. doi: 10.1111/j.1432-1033.1997.00070.x.

Abstract

The HlpA protein which is encoded by the hlpA gene in the plastid genome of the cryptomonad alga Chryptomonas phi is structurally related to the non-sequence-specific DNA-binding and DNA-bending HU family of chromatin-associated proteins. The expression of the HlpA protein complements the mutant phenotype of Bacillus subtilis cells impaired in the Hbsu protein (B. subtilis HU), as measured by the resistance of the cells to methylmethane sulphonate. To analyse the interactions of HlpA with DNA, we expressed the protein in Escherichia coli and purified it to homogeneity. HlpA interacts preferentially with four-way junction DNA or DNA minicircles, when compared with linear DNA, recognising DNA structure. HlpA and E. coli HU display comparable affinities for all types of DNA tested; however, HlpA exhibits a stronger tendency to self-associate in the presence of DNA. Accordingly, HlpA oligomerises more readily than HU in protein crosslinking experiments. In the presence of topoisomerase I, HlpA constrains negative superhelical turns in closed circular plasmid DNA. The HlpA protein mediates the joining of distant recombination sites into a complex nucleoprotein structure, as judged by beta-mediated site-specific recombination. The results presented provide evidence that HlpA is a functional plastid equivalent of nuclear and mitochondrial HMG1-like proteins and bacterial HU proteins.

摘要

隐滴虫藻Chryptomonas phi质体基因组中的hlpA基因编码的HlpA蛋白,在结构上与染色质相关蛋白的非序列特异性DNA结合和DNA弯曲HU家族相关。通过细胞对甲磺酸甲酯的抗性来衡量,HlpA蛋白的表达补充了枯草芽孢杆菌细胞中Hbsu蛋白(枯草芽孢杆菌HU)受损的突变表型。为了分析HlpA与DNA的相互作用,我们在大肠杆菌中表达了该蛋白并将其纯化至同质。与线性DNA相比,HlpA优先与四向连接DNA或DNA小环相互作用,识别DNA结构。HlpA和大肠杆菌HU对所有测试类型的DNA表现出相当的亲和力;然而,HlpA在DNA存在下表现出更强的自我缔合倾向。因此,在蛋白质交联实验中,HlpA比HU更容易寡聚化。在拓扑异构酶I存在的情况下,HlpA在闭环质粒DNA中限制负超螺旋圈数。通过β介导的位点特异性重组判断,HlpA蛋白介导远距离重组位点连接成复杂的核蛋白结构。所呈现的结果提供了证据,表明HlpA是核和线粒体HMG1样蛋白以及细菌HU蛋白的功能性质体等效物。

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