首页> 美国卫生研究院文献>Journal of Bacteriology >Paracoccus denitrificans PD1222 Utilizes Hypotaurine via Transamination Followed by Spontaneous Desulfination To Yield Acetaldehyde and Finally Acetate for Growth
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Paracoccus denitrificans PD1222 Utilizes Hypotaurine via Transamination Followed by Spontaneous Desulfination To Yield Acetaldehyde and Finally Acetate for Growth

机译:反硝化副球菌PD1222通过转氨基作用利用次牛磺酸然后自发脱硫得到乙醛最后使乙酸生长。

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摘要

Hypotaurine (HT; 2-aminoethane-sulfinate) is known to be utilized by bacteria as a sole source of carbon, nitrogen, and energy for growth, as is taurine (2-aminoethane-sulfonate); however, the corresponding HT degradation pathway has remained undefined. Genome-sequenced Paracoccus denitrificans PD1222 utilized HT (and taurine) quantitatively for heterotrophic growth and released the HT sulfur as sulfite (and sulfate) and HT nitrogen as ammonium. Enzyme assays with cell extracts suggested that an HT-inducible HT:pyruvate aminotransferase (Hpa) catalyzes the deamination of HT in an initial reaction step. Partial purification of the Hpa activity and peptide fingerprinting-mass spectrometry (PF-MS) identified the Hpa candidate gene; it encoded an archetypal taurine:pyruvate aminotransferase (Tpa). The same gene product was identified via differential PAGE and PF-MS, as was the gene of a strongly HT-inducible aldehyde dehydrogenase (Adh). Both genes were overexpressed in Escherichia coli. The overexpressed, purified Hpa/Tpa showed HT:pyruvate-aminotransferase activity. Alanine, acetaldehyde, and sulfite were identified as the reaction products but not sulfinoacetaldehyde; the reaction of Hpa/Tpa with taurine yielded sulfoacetaldehyde, which is stable. The overexpressed, purified Adh oxidized the acetaldehyde generated during the Hpa reaction to acetate in an NAD+-dependent reaction. Based on these results, the following degradation pathway for HT in strain PD1222 can be depicted. The identified aminotransferase converts HT to sulfinoacetaldehyde, which desulfinates spontaneously to acetaldehyde and sulfite; the inducible aldehyde dehydrogenase oxidizes acetaldehyde to yield acetate, which is metabolized, and sulfite, which is excreted.
机译:已知牛磺酸(HT; 2-氨基乙烷磺酸盐)被细菌用作唯一的碳,氮和生长能量来源,牛磺酸(2-氨基乙烷磺酸盐)也是如此。然而,相应的HT降解途径仍未确定。基因组测序的反硝化副球菌PD1222定量利用HT(和牛磺酸)进行异养生长,并以亚硫酸盐(和硫酸盐)形式释放HT硫,以铵态形式释放HT氮。用细胞提取物进行酶分析表明,HT诱导型HT:丙酮酸氨基转移酶(Hpa)在初始反应步骤中催化HT的脱氨基反应。 Hpa活性的部分纯化和肽指纹质谱法(PF-MS)鉴定了Hpa候选基因。它编码了一个原型牛磺酸:丙酮酸氨基转移酶(Tpa)。通过差异PAGE和PF-MS鉴定出相同的基因产物,与强HT诱导的醛脱氢酶(Adh)的基因一样。两种基因在大肠杆菌中均过表达。过表达的纯化的Hpa / Tpa显示出HT:丙酮酸-氨基转移酶活性。丙氨酸,乙醛和亚硫酸盐被确定为反应产物,但不是磺基乙醛。 Hpa / Tpa与牛磺酸反应生成的磺基乙醛是稳定的。过度表达的纯化Adh在NAD + 依赖性反应中将Hpa反应期间生成的乙醛氧化为乙酸盐。基于这些结果,可以描述菌株PD1222中HT的以下降解途径。鉴定出的氨基转移酶将HT转化为亚磺酰基乙醛,后者自发地脱硫为乙醛和亚硫酸盐。诱导型醛脱氢酶将乙醛氧化,生成乙酸盐(被代谢)和亚硫酸盐(被排泄)。

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