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首页> 外文期刊>Eukaryotic cell >Identification of Hexose Transporter-Like Sensor HXS1 and Functional Hexose Transporter HXT1 in the Methylotrophic Yeast Hansenula polymorpha
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Identification of Hexose Transporter-Like Sensor HXS1 and Functional Hexose Transporter HXT1 in the Methylotrophic Yeast Hansenula polymorpha

机译:甲基营养酵母多形汉逊酵母中类似于己糖转运蛋白的传感器HXS1和功能性己糖转运蛋白HXT1的鉴定

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We identified in the methylotrophic yeast Hansenula polymorpha (syn. Pichia angusta) a novel hexose transporter homologue gene, HXS1 (hexose sensor), involved in transcriptional regulation in response to hexoses, and a regular hexose carrier gene, HXT1 (hexose transporter). The Hxs1 protein exhibits the highest degree of primary sequence similarity to the Saccharomyces cerevisiae transporter-like glucose sensors, Snf3 and Rgt2. When heterologously overexpressed in an S. cerevisiae hexose transporter-less mutant, Hxt1, but not Hxs1, restores growth on glucose or fructose, suggesting that Hxs1 is nonfunctional as a carrier. In its native host, HXS1 is expressed at moderately low level and is required for glucose induction of the H. polymorpha functional low-affinity glucose transporter Hxt1. Similarly to other yeast sensors, one conserved amino acid substitution in the Hxs1 sequence (R203K) converts the protein into a constitutively signaling form and the C-terminal region of Hxs1 is essential for its function in hexose sensing. Hxs1 is not required for glucose repression or catabolite inactivation that involves autophagic degradation of peroxisomes. However, HXS1 deficiency leads to significantly impaired transient transcriptional repression in response to fructose, probably due to the stronger defect in transport of this hexose in the hxs1Δ deletion strain. Our combined results suggest that in the Crabtree-negative yeast H. polymorpha, the single transporter-like sensor Hxs1 mediates signaling in the hexose induction pathway, whereas the rate of hexose uptake affects the strength of catabolite repression.
机译:我们在甲基营养型酵母 Hansenula polymorpha (同属 Pichia angusta )中发现了一个新的己糖转运蛋白同源基因 HXS1 h e x ose s ensor),参与响应于己糖的转录调控,以及常规的己糖载体基因 HXT1 h e x ose t ransporter)。 Hxs1蛋白与酿酒酵母转运蛋白样葡萄糖传感器Snf3和Rgt2的一级序列相似性最高。在 S中异源过表达时。酿酒酵母无己糖转运蛋白的突变体Hxt1,而不是Hxs1,可在葡萄糖或果糖上恢复生长,表明Hxs1无法作为载体。在其天然宿主中, HXS1 的表达水平较低,是 H的葡萄糖诱导所必需的。功能低亲和力葡萄糖转运蛋白Hxt1。与其他酵母传感器类似,Hxs1序列(R203K)中一个保守的氨基酸取代将蛋白质转换为组成型信号传导形式,Hxs1的C端区域对于其在己糖感测中的功能至关重要。 Hxs1对于涉及过氧化物酶体自噬降解的葡萄糖抑制或分解代谢物失活不是必需的。然而, HXS1 缺乏症导致果糖响应的瞬时转录抑制显着受损,这可能是由于 hxs1 Δ缺失菌株中己糖转运的缺陷所致。我们的综合结果表明,在Crabtree阴性酵母 H中。单形转运体传感器Hxs1介导多形吗啡在己糖诱导途径中的信号传导,而己糖摄取的速率会影响分解代谢物抑制的强度。

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