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多形汉逊酵母麦芽糖酶基因启动子在多形汉逊酵母和酿酒酵母中的调控1。

Regulation of the Hansenula polymorpha maltase gene promoter in H. polymorpha and Saccharomyces cerevisiae1.

作者信息

Alamäe Tiina, Pärn Pille, Viigand Katrin, Karp Helen

机构信息

Institute of Molecular and Cell Biology, University of Tartu, Riia 23, 51010, Tartu, Estonia.

出版信息

FEMS Yeast Res. 2003 Nov;4(2):165-73. doi: 10.1016/S1567-1356(03)00142-9.

Abstract

Hansenula polymorpha is an exception among methylotrophic yeasts because it can grow on the disaccharides maltose and sucrose. We disrupted the maltase gene (HPMAL1) in H. polymorpha 201 using homologous recombination. Resulting disruptants HP201HPMAL1Delta failed to grow on maltose and sucrose, showing that maltase is essential for the growth of H. polymorpha on both disaccharides. Expression of HPMAL1 in HP201HPMAL1Delta from the truncated variants of the promoter enabled us to define the 5'-upstream region as sufficient for the induction of maltase by disaccharides and its repression by glucose. Expression of the Saccharomyces cerevisiae maltase gene MAL62 was induced by maltose and sucrose, and repressed by glucose if expressed in HP201HPMAL1Delta from its own promoter. Similarly, the HPMAL1 promoter was recognized and correctly regulated by the carbon source in a S. cerevisiae maltase-negative mutant 100-1B. Therefore we suggest that the transcriptional regulators of S. cerevisiae MAL genes (MAL activator and Mig1 repressor) can affect the expression of the H. polymorpha maltase gene, and that homologues of these proteins may exist in H. polymorpha. Using the HPMAL1 gene as a reporter in a H. polymorpha maltase disruption mutant it was shown that the strength of the HPMAL1 promoter if induced by sucrose is quite comparable to the strength of the H. polymorpha alcohol oxidase promoter under conditions of methanol induction, revealing the biotechnological potential of the HPMAL1 promoter.

摘要

多形汉逊酵母在甲基营养型酵母中是个例外,因为它能在二糖麦芽糖和蔗糖上生长。我们利用同源重组破坏了多形汉逊酵母201中的麦芽糖酶基因(HPMAL1)。产生的破坏株HP201HPMAL1Delta无法在麦芽糖和蔗糖上生长,这表明麦芽糖酶对于多形汉逊酵母在这两种二糖上的生长至关重要。从启动子的截短变体在HP201HPMAL1Delta中表达HPMAL1,使我们能够确定5'-上游区域足以被二糖诱导麦芽糖酶表达并被葡萄糖抑制。如果从其自身启动子在HP201HPMAL1Delta中表达,酿酒酵母麦芽糖酶基因MAL62的表达会被麦芽糖和蔗糖诱导,并被葡萄糖抑制。同样,在酿酒酵母麦芽糖酶阴性突变体100-1B中,HPMAL1启动子能被碳源识别并正确调控。因此我们认为酿酒酵母MAL基因的转录调节因子(MAL激活剂和Mig1阻遏物)可以影响多形汉逊酵母麦芽糖酶基因的表达,并且这些蛋白质的同源物可能存在于多形汉逊酵母中。在多形汉逊酵母麦芽糖酶破坏突变体中使用HPMAL1基因作为报告基因表明,蔗糖诱导时HPMAL1启动子的强度与甲醇诱导条件下多形汉逊酵母醇氧化酶启动子的强度相当,揭示了HPMAL1启动子的生物技术潜力。

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