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首页> 外文期刊>MBio >A Novel Calcium Uptake Transporter of Uncharacterized P-Type ATPase Family Supplies Calcium for Cell Surface Integrity in Mycobacterium smegmatis
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A Novel Calcium Uptake Transporter of Uncharacterized P-Type ATPase Family Supplies Calcium for Cell Surface Integrity in Mycobacterium smegmatis

机译:一种新型的钙吸收转运蛋白,其特征在于P型ATPase家族为耻垢分枝杆菌的细胞表面完整性提供钙。

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摘要

ABSTRACT Ca~(2+)plays an important role in the physiology of bacteria. Intracellular Ca~(2+)concentrations are tightly maintained in the nanomolar range. Molecular mechanisms of Ca~(2+)uptake in bacteria remain elusive. Here we show that CtpE is responsible for Ca~(2+)uptake in Mycobacterium smegmatis . It represents a previously uncharacterized P-type ATPase family in bacteria. Disruption of ctpE in M.?smegmatis resulted in a mutant with impaired growth under Ca~(2+)-deficient conditions. The growth defect of the mutant could be rescued by Ca~(2+)or by ectopic expression of ctpE from M.?smegmatis or the orthologous gene ( Rv0908 ) from Mycobacterium tuberculosis H37Rv. Radioactive transport assays revealed that CtpE is a Ca~(2+)-specific transporter. Ca~(2+)deficiency increased expression of ctpE , resulting in increased~(45)Ca~(2+)accumulation in cells. ctpE is a gene that is part of an operon, which is negatively regulated by Ca~(2+). The ctpE mutant also showed hypersensitivity to polymyxin B, increased biofilm formation, and higher cell aggregation, indicating cell envelope defects. Our work establishes, for the first time, the presence of Ca~(2+)uptake pumps of the energy-dependent P-type ATPase superfamily in bacteria and also implicates that intracellular Ca~(2+)is essential for growth and cell envelope integrity in M.?smegmatis . IMPORTANCE Ca~(2+)is essential for gene regulation, enzymatic activity, and maintenance of structural integrity of cell walls in bacteria. Bacteria maintain intracellular calcium concentrations in a narrow range, creating a gradient with low cytoplasmic calcium concentration and high extracellular calcium concentration. Due to this steep gradient, active pumps belonging to family 2 of P-type ATPases and antiporters are used for Ca~(2+)efflux, whereas Ca~(2+)uptake is usually carried out by channels. Molecular mechanisms of Ca~(2+)uptake in bacteria are still elusive and are mainly limited to a nonproteinaceous channel in Escherichia coli and a pH-dependent channel protein from Bacillus subtilis . Energy-dependent active transporters are not reported for Ca~(2+)uptake from any organism. Here we show that CtpE belonging to a family of previously uncharacterized bacterial P-type ATPases is involved in specific uptake of Ca~(2+)into Mycobacterium smegmatis . We also demonstrate that intracellular Ca~(2+)obtained through CtpE is essential for growth and maintenance of cell surface properties under Ca~(2+)-deficient conditions.
机译:摘要Ca〜(2+)在细菌的生理中起着重要的作用。细胞内Ca〜(2+)浓度保持在纳摩尔范围内。细菌吸收Ca〜(2+)的分子机制尚不清楚。在这里,我们显示CtpE负责耻垢分枝杆菌中Ca〜(2+)的吸收。它代表了细菌中以前未鉴定的P型ATP酶家族。耻垢分枝杆菌中ctpE的破坏导致突变株在缺乏Ca〜(2+)的条件下生长受损。该突变体的生长缺陷可以通过Ca〜(2+)或异位表达来自耻垢分枝杆菌的ctpE或来自结核分枝杆菌H37Rv的直系同源基因(Rv0908)来挽救。放射性转运分析表明,CtpE是Ca〜(2+)特异性转运蛋白。 Ca〜(2+)缺乏导致ctpE表达增加,导致细胞中〜(45)Ca〜(2+)蓄积增加。 ctpE是操纵子一部分的基因,受Ca〜(2+)负调控。 ctpE突变体还显示出对多粘菌素B过敏,生物膜形成增加和更高的细胞聚集,表明细胞包膜缺陷。我们的工作首次在细菌中建立了能量依赖的P型ATPase超家族的Ca〜(2+)吸收泵的存在,并暗示细胞内Ca〜(2+)对于生长和细胞包膜至关重要耻垢分枝杆菌的完整性。重要Ca〜(2+)对于基因调节,酶活性和维持细菌细胞壁的结构完整性至关重要。细菌将细胞内钙浓度维持在一个狭窄的范围内,从而形成一个低细胞质钙浓度和高细胞外钙浓度的梯度。由于这种陡峭的梯度,属于Ca型(2+)外排使用的是属于P型ATPase家族2和反转运蛋白的主动泵,而通常通过通道进行Ca〜(2+)的吸收。细菌中Ca〜(2+)吸收的分子机制仍然难以捉摸,并且主要限于大肠杆菌中的非蛋白质通道和枯草芽孢杆菌的pH依赖性通道蛋白。没有报道能量依赖的主动转运蛋白从任何生物体中吸收Ca〜(2+)。在这里,我们显示属于以前未表征的细菌P型ATP酶家族的CtpE参与了耻垢分枝杆菌对Ca〜(2+)的特异性摄取。我们还证明了通过CtpE获得的细胞内Ca〜(2+)对于Ca〜(2+)缺乏条件下的生长和细胞表面特性的维持至关重要。

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