首页> 美国卫生研究院文献>Biophysics and Physicobiology >Comparative study of the different mechanisms for zinc ion stress sensing in two cyanobacterial strains Synechococcus sp. PCC 7942 and Synechocystis sp. PCC 6803
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Comparative study of the different mechanisms for zinc ion stress sensing in two cyanobacterial strains Synechococcus sp. PCC 7942 and Synechocystis sp. PCC 6803

机译:两种蓝藻菌株Synechococcus sp。中锌离子应力感测不同机制的比较研究。 PCC 7942和集胞藻(Synechochocystis sp。) PCC 6803

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摘要

In response to an increased level of Zn2+, Synechococcus sp. PCC 7942 expresses SmtA, a metallothionein-like metal-chelating protein, while Synechocystis sp. PCC 6803 expresses ZiaA, a transporter of Zn2+. The gene expression of these proteins is regulated by repressor protein, SmtB and ZiaR, respectively. In spite of contributing to different response systems, both repressor proteins belong to the ArsR family and are highly homologous to each other. To understand the different systems responsible for dealing with excess Zn2+, we examined the cis-elements in the promoter regions of smtA and ziaA, as well as the binding affinities of recombinant SmtB and ZiaR proteins. The operator/promoter region of smtA included two palindromic sequences and that of ziaA included one. Electrophoretic mobility shift assay revealed that SmtB formed four different complexes with the operator/promoter region of smtA, whereas it formed only two different complexes with the corresponding region of ziaA. For ZiaR, the corresponding results were quite the same as those for SmtB. Furthermore, the complex formation between SmtB and operator/promoter regions is inhibited in the presence of Zn2+ at higher concentrations than 16 μM. On the other hand, the corresponding Zn2+ concentration is 128 μM. These results demonstrate that the degrees of protein-DNA complex formation between repressor proteins and the operator/promoter regions of regulated genes depend on the structures of the operator/promoter regions, and the effects of Zn2+ on the dissociation of these complexes are mainly associated with the structures of the repressors.
机译:为了响应Zn 2 + 水平的升高,Synchococcus sp.。 PCC 7942表达SmtA,一种金属硫蛋白样金属螯合蛋白,而集胞藻(Synechocystis sp。) PCC 6803表示ZiaA,Zn 2 + 的转运蛋白。这些蛋白的基因表达分别由阻遏蛋白SmtB和ZiaR调控。尽管有助于不同的应答系统,两种阻遏蛋白均属于ArsR家族,并且彼此高度同源。为了了解负责处理过量Zn 2 + 的不同系统,我们研究了smtA和ziaA启动子区域的顺式元件,以及重组SmtB和ZiaR蛋白的结合亲和力。 smtA的操纵子/启动子区域包括两个回文序列,而ziaA的操纵子/启动子区域包括一个。电泳迁移率变动分析表明,SmtB与smtA的操纵子/启动子区域形成了四种不同的复合物,而与ziaA的相应区域仅形成了两种不同的复合物。对于ZiaR,相应的结果与SmtB的结果完全相同。此外,在浓度高于16μM的Zn 2 + 存在下,SmtB与操纵子/启动子区域之间的复合物形成受到抑制。另一方面,相应的Zn 2 + 浓度为128μM。这些结果表明,阻遏蛋白与调控基因的操纵子/启动子区域之间蛋白质-DNA复合物形成的程度取决于操纵子/启动子区域的结构,以及Zn 2 + 对蛋白质的影响。这些复合物的解离主要与阻遏物的结构有关。

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