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Characterization of a Bifunctional PutA Homologue from Bradyrhizobium japonicum and Identification of an Active Site Residue that Modulates Proline Reduction of the Flavin Adenine Dinucleotide Cofactor

机译:从日本根瘤菌双功能PutA同源物的表征和活性位点残基的鉴定其调节脯氨酸还原黄素腺嘌呤二核苷酸辅因子。

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摘要

PutA is a bifunctional flavoenzyme in bacteria that catalyzes the four-electron oxidation of proline to glutamate. In certain prokaryotes such as Escherichia coli, PutA is also a transcriptional repressor of the proline utilization (put) genes and thus is trifunctional. In this work, we have begun to assess differences between bifunctional and trifunctional PutA enzymes by examining the PutA protein from Bradyrhizobium japonicum (BjPutA). Primary structure analysis of BjPutA shows it lacks the DNA-binding domain of E. coli PutA (EcPutA). Consistent with this prediction, purified BjPutA does not exhibit DNA-binding activity in native gel mobility shift assays with promoter regions of the putA gene from B. japonicum. The catalytic and redox properties of BjPutA were characterized and a reduction potential (Em) value of −0.132 V (pH 7.5) was determined for the bound FAD/FADH2 couple in BjPutA that is significantly more negative (∼ 55 mV) than the Em for EcPutA-bound FAD. The more negative Em value thermodynamically limits proline reduction of the FAD cofactor in BjPutA. In the presence of phospholipids, reduction of BjPutA is stimulated suggesting lipids influence the FAD redox environment. Accordingly, an Em value of −-0.114 V (pH 7.5) was determined for BjPutA-bound FAD in the presence of polar lipids. The molecular basis for the lower reduction potential of FAD in BjPutA relative to EcPutA was explored by site-directed mutagenesis. Amino acid sequence alignment between BjPutA and EcPutA indicates only one difference in active site residues near the isoalloxazine ring of FAD: Val-402 in EcPutA is substituted at the analogous position in BjPutA with Ala-310. Replacement of A310 by Val in the BjPutA mutant A310V raised the reduction potential of bound FAD relative to wild-type BjPutA to an Em value of −0.09 V (pH 7.5). The > 40-mV positive shift in the potential of the BjPutA mutant A310V suggests that the corresponding Val residue in EcPutA helps poise the FAD redox potential for thermodynamically favored proline reduction thereby allowing EcPutA to be efficiently regulated by proline availability. Limited proteolysis of BjPutA under reducing conditions shows FAD reduction does not influence BjPutA conformation indicating further that the redox dependent regulation observed with EcPutA may be limited to trifunctional PutA homologues.
机译:PutA是细菌中的双功能黄素酶,可催化脯氨酸四电子氧化为谷氨酸。在某些原核生物如大肠杆菌中,PutA还是脯氨酸利用(put)基因的转录阻遏物,因此是三功能的。在这项工作中,我们已经开始通过检查来自日本根瘤菌(Bradyrhizobium japonicum)(BjPutA)的PutA蛋白来评估双功能和三功能PutA酶之间的差异。 BjPutA的一级结构分析表明,它缺乏大肠杆菌PutA(EcPutA)的DNA结合结构域。与该预测一致,纯化的BjPutA在来自日本根瘤菌的putA基因的启动子区域的天然凝胶迁移率迁移分析中不显示DNA结合活性。对BjPutA的催化和氧化还原特性进行了表征,并确定了BjPutA中结合的FAD / FADH2对的还原电势(Em)值为-0.132 V(pH 7.5),比Em的Em明显更负(〜55 mV)。受EcPutA约束的FAD。 Em的负值在热力学上限制了BjPutA中FAD辅因子的脯氨酸减少。在磷脂的存在下,BjPutA的减少受到刺激,表明脂质影响FAD氧化还原环境。因此,在极性脂质存在下,与BjPutA结合的FAD的Em值确定为--0.114 V(pH 7.5)。通过定点诱变探索了BjPutA中FAD相对于EcPutA还原电位降低的分子基础。 BjPutA和EcPutA之间的氨基酸序列比对表明,FAD的异别恶嗪环附近的活性位点残基只有一个差异:EcPutA中的Val-402在BjPutA中的类似位置被Ala-310取代。在BjPutA突变体A310V中用Val替代A310将结合的FAD相对于野生型BjPutA的还原电位提高到-0.09 V(pH 7.5)的Em值。 BjPutA突变体A310V的电势> 40 mV正移表明,EcPutA中相应的Val残基有助于保持FAD氧化还原电势,从而有利于热力学上的脯氨酸还原,从而使EcPutA可以通过脯氨酸可用性得到有效调节。在还原条件下BjPutA的有限蛋白水解显示FAD还原不会影响BjPutA构象,这进一步表明,用EcPutA观察到的氧化还原依赖性调节可能仅限于三功能PutA同源物。

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  • 年(卷),期 -1(44),25
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  • 页码 9130–9139
  • 总页数 23
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