首页> 外文OA文献 >The High-Affinity Maltose/Trehalose ABC Transporter in the Extremely Thermophilic Bacterium Thermus thermophilus HB27 Also Recognizes Sucrose and Palatinose
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The High-Affinity Maltose/Trehalose ABC Transporter in the Extremely Thermophilic Bacterium Thermus thermophilus HB27 Also Recognizes Sucrose and Palatinose

机译:嗜热细菌嗜热菌HB27中的高亲和力麦芽糖/海藻糖ABC转运蛋白也可识别蔗糖和帕拉金糖

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摘要

We have studied the transport of trehalose and maltose in the thernophilic bacterium Thermus thermophilus HB27, which grows optimally in the range of 70 to 75°C. The Km values at 70°C were 109 nM for trehalose and 114 nM for maltose; also, a high Km (424 nM) was found for the uptake of sucrose. Competition studies showed that a single transporter recognizes trehalose, maltose, and sucrose, while d-galactose, d-fucose, l-rhamnose, l-arabinose, and d-mannose were not competitive inhibitors. In the recently published genome of T. thermophilus HB27, two gene clusters designated malEFG1 (TTC1627 to -1629) and malEFG2 (TTC1288 to -1286) and two monocistronic genes designated malK1 (TTC0211) and malK2 (TTC0611) are annotated as trehalose/maltose and maltose/maltodextrin transport systems, respectively. To find out whether any of these systems is responsible for the transport of trehalose, the malE1 and malE2 genes, lacking the sequence encoding the signal peptides, were expressed in Escherichia coli. The binding activity of pure recombinant proteins was analyzed by equilibrium dialysis. MalE1 was able to bind maltose, trehalose, and sucrose but not glucose or maltotetraose (Kd values of 103, 67, and 401 nM, respectively). Mutants with disruptions in either malF1 or malK1 were unable to grow on maltose, trehalose, sucrose, or palatinose, whereas mutants with disruption in malK2 or malF2 showed no growth defect on any of these sugars. Therefore, malEFG1 encodes the binding protein and the two transmembrane subunits of the trehalose/maltose/sucrose/palatinose ABC transporter, and malK1 encodes the ATP-binding subunit of this transporter. Despite the presence of an efficient transporter for trehalose, this compound was not used by HB27 for osmoprotection. MalE1 and MalE2 exhibited extremely high thermal stability: melting temperatures of 90°C for MalE1 and 105°C for MalE2 in the presence of 2.3 M guanidinium chloride. The latter protein did not bind any of the sugars examined and is not implicated in a maltose/maltodextrin transport system. This work demonstrates that malEFG1 and malK1 constitute the high-affinity ABC transport system of T. thermophilus HB27 for trehalose, maltose, sucrose, and palatinose.
机译:我们已经研究了嗜热性嗜热菌HB27中海藻糖和麦芽糖的运输,嗜热性嗜热菌HB27在70至75°C的最佳温度范围内生长。海藻糖在70°C时的Km值为109 nM,麦芽糖为114 nM。另外,发现高Km(424 nM)可吸收蔗糖。竞争研究表明,单个转运蛋白识别海藻糖,麦芽糖和蔗糖,而d-半乳糖,d-岩藻糖,l-鼠李糖,l-阿拉伯糖和d-甘露糖不是竞争性抑制剂。在最近发表的嗜热链球菌HB27基因组中,两个名为malEFG1(TTC1627至-1629)和malEFG2(TTC1288至-1286)的基因簇和两个名为malK1(TTC0211)和malK2(TTC0611)的单顺反子基因被标注为海藻糖/麦芽糖和麦芽糖/麦芽糊精转运系统。为了找出这些系统中是否有一个负责海藻糖的运输,在大肠杆菌中表达了缺少编码信号肽序列的malE1和malE2基因。通过平衡透析分析纯重组蛋白的结合活性。 MalE1能够结合麦芽糖,海藻糖和蔗糖,但不结合葡萄糖或麦芽四糖(Kd值分别为103、67和401 nM)。 malF1或malK1发生突变的突变体无法在麦芽糖,海藻糖,蔗糖或帕拉金糖上生长,而malK2或malF2发生破坏的突变体在任何这些糖上均未显示生长缺陷。因此,malEFG1编码海藻糖/麦芽糖/蔗糖/帕拉金糖ABC转运蛋白的结合蛋白和两个跨膜亚基,而malK1编码该转运蛋白的ATP结合亚基。尽管存在有效的海藻糖转运蛋白,但HB27并未使用该化合物进行渗透保护。 MalE1和MalE2具有极高的热稳定性:在存在2.3 M氯化胍的情况下,MalE1的熔融温度为90°C,MalE2的熔融温度为105°C。后者蛋白质不结合任何检查的糖,并且不涉及麦芽糖/麦芽糖糊精转运系统。这项工作证明了malEFG1和malK1构成了嗜热链球菌HB27的高亲和力ABC运输系统,用于海藻糖,麦芽糖,蔗糖和帕拉金糖。

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