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Common cis-acting region responsible for transcriptional regulation of Bradyrhizobium japonicum hydrogenase by nickel, oxygen, and hydrogen.

机译:常见的顺式作用区,负责通过镍,氧和氢进行日本根瘤菌根瘤菌氢化酶的转录调控。

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摘要

Bradyrhizobium japonicum expresses hydrogenase in microaerophilic free-living conditions in the presence of nickel. Plasmid-borne hup-lacZ transcriptional fusion constructs were used to study the regulation of the hydrogenase gene. The hydrogenase gene was transcriptionally induced under microaerobic conditions (0.1 to 3.0% partial pressure O2). The hydrogenase gene was not transcribed or was poorly transcribed in strictly anaerobic conditions or conditions above 3.0% O2. Hydrogen gas at levels as low as 0.1% partial pressure induced hydrogenase transcription, and a high level of transcription was maintained up to at least 10% H2 concentration. No transcription was observed in the absence of H2. Hydrogenase was regulated by H2, O2, and Ni when the 5'-upstream sequence was pared down to include base number -168. However, when the upstream sequence was pared down to base number -118, the regulatory response to O2, H2, and Ni levels was negated. Thus, a common cis-acting regulatory region localized within 50 bp is critical for the regulation of hydrogenase by hydrogen, oxygen, and nickel. As a control, the B. japonicum hemA gene which codes for delta-aminolevulinic acid synthase was also fused to the promoterless lacZ gene, and its regulation was tested in the presence of various concentrations of O2 and H2. hemA-lacZ transcription was not dependent on levels of Ni, O2, or H2. Two different hup-lacZ fusions were tested in a Hup- background, strain JH47; these hup-lacZ constructs in JH47 demonstrated dependency on nickel, O2, and H2, indicating that the hydrogenase protein itself is not a sensor for regulation by O2, H2, or nickel.
机译:慢生根瘤菌在有镍的微需氧自由生活条件下表达氢化酶。质粒携带的hup-lacZ转录融合构建体用于研究氢化酶基因的调控。在有氧条件下(0.1至3.0%的分压O2)转录诱导氢化酶基因。在严格的厌氧条件或高于3.0%O2的条件下,氢化酶基因未转录或转录较差。氢气的分压低至0.1%会诱导氢化酶转录,并保持高水平的转录,直至至少10%H2浓度。在没有H2的情况下未观察到转录。当削减5'-上游序列的碱基数-168时,H2,O2和Ni会调节氢化酶。但是,当上游序列减少到碱基数-118时,对O2,H2和Ni的调节响应被否定。因此,位于50 bp内的常见顺式作用调控区对于氢,氧和镍对氢化酶的调控至关重要。作为对照,还将编码δ-氨基乙酰丙酸合酶的日本血吸虫的hemA基因与无启动子的lacZ基因融合,并在各种浓度的O2和H2存在下测试其调控。 hemA-lacZ转录不依赖于Ni,O2或H2的水平。在Hup-背景菌株JH47中测试了两种不同的hup-lacZ融合蛋白; JH47中的这些hup-lacZ构建体表现出对镍,O2和H2的依赖性,这表明氢化酶蛋白本身不是O2,H2或镍调节的传感器。

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  • 作者

    Kim, H; Yu, C; Maier, R J;

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  • 年度 1991
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