首页> 外文期刊>The Biochemical Journal >Biochemical and genetic characterization of PpcA, a periplasmic c-type cytochrome in Geobacter sulfurreducens.
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Biochemical and genetic characterization of PpcA, a periplasmic c-type cytochrome in Geobacter sulfurreducens.

机译:PpcA的生物化学和遗传特性,Geobacter sulphreducens中的一种周质c型细胞色素。

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A 9.6 kDa periplasmic c -type cytochrome, designated PpcA, was purified from the Fe(III)-reducing bacterium Geobacter sulfurreducens and characterized. The purified protein is basic (pI 9.5), contains three haems and has an N-terminal amino acid sequence closely related to those of the previously described trihaem c (7) cytochromes of Geobacter metallireducens and Desulfuromonas acetoxidans. The gene encoding PpcA was identified from the G. sulfurreducens genome using the N-terminal sequence, and encodes a protein of 71 amino acids (molecular mass 9.58 kDa) with 49% identity to the c (7) cytochrome of D. acetoxidans. In order to determine the physiological role of PpcA, a knockout mutant was prepared with a single-step recombination method. Acetate-dependent Fe(III) reduction was significantly inhibited in both growing cultures and cell suspensions of the mutant. When ppcA was expressed in trans, the full capacity for Fe(III) reduction with acetate was restored. The transfer of electrons from acetate to anthraquinone 2,6-disulphonate (AQDS; a humic acid analogue) and to U(VI) was also compromised in the mutant, but acetate-dependent reduction of fumarate was not altered. The rates of reduction of Fe(III), AQDS, U(VI) and fumarate were also the same in the wild type and ppcA mutant when hydrogen was supplied as the electron donor. When taken together with previous studies on other electron transport proteins in G. sulfurreducens, these results suggest that PpcA serves as an intermediary electron carrier from acetate to terminal Fe(III) reductases in the outer membrane, and is also involved in the transfer of electrons from acetate to U(VI) and humics.
机译:从还原Fe(III)的细菌Geobacter sulfreducens中纯化了9.6 kDa的周质c型细胞色素,称为PpcA。纯化的蛋白质是碱性的(pI 9.5),包含三个血红素,并具有一个与先前描述的金属还原土杆菌和乙酰氧化脱硫脲的trihaem c(7)细胞色素的N端氨基酸序列紧密相关的氨基酸序列。编码PpcA的基因是使用N端序列从硫还原芽孢杆菌基因组中鉴定出来的,编码的71个氨基酸(分子量9.58 kDa)的蛋白质与乙酰氧乙酸衣杆菌的c(7)细胞色素具有49%的同一性。为了确定PpcA的生理作用,用单步重组方法制备了敲除突变体。醋酸盐依赖性的Fe(III)还原在突变体的生长培养物和细胞悬浮液中均被显着抑制。当ppcA反式表达时,还原了用乙酸还原Fe(III)的全部能力。电子从醋酸盐到蒽醌2,6-二磺酸盐(AQDS;腐殖酸类似物)和U(VI)的转移在突变体中也受到影响,但是醋酸盐依赖性的富马酸盐还原没有改变。当提供氢作为电子供体时,野生型和ppcA突变体中Fe(III),AQDS,U(VI)和富马酸盐的还原率也相同。当与以前关于硫还原菌中其他电子转运蛋白的研究一起使用时,这些结果表明,PpcA充当了乙酸盐到外膜中末端Fe(III)还原酶的中间电子载体,并且还参与了电子的转移从醋酸盐到U(VI)和腐殖质。

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