Roggenkamp R, Janowicz Z, Stanikowski B, Hollenberg C P
Mol Gen Genet. 1984;194(3):489-93. doi: 10.1007/BF00425563.
The biosynthesis of methanol oxidase, a peroxisomal enzyme in the methanol-utilizing yeast Hansenula polymorpha, was studied in vitro. Translation of Hansenula mRNA in a rabbit reticulocyte lysate yields methanol oxidase protein in high amounts. The apparent molecular mass of the protein was found to be identical to the subunit of the functional multimeric enzyme, which indicates the absence of an N-terminal extension typical of most transported proteins. The regulation of methanol oxidase by glucose repression and depression as well as by induction of methanol was shown to be controlled at the level of transcription. Two mutants of Hansenula polymorpha, unable to grow on methanol as a carbon and energy source were shown to be affected in methanol oxidase synthesis.
对甲醇利用酵母多形汉逊酵母中的一种过氧化物酶体酶——甲醇氧化酶的生物合成进行了体外研究。多形汉逊酵母mRNA在兔网织红细胞裂解物中的翻译产生了大量的甲醇氧化酶蛋白。发现该蛋白的表观分子量与功能性多聚体酶的亚基相同,这表明不存在大多数转运蛋白典型的N端延伸。研究表明,葡萄糖阻遏和去阻遏以及甲醇诱导对甲醇氧化酶的调节是在转录水平上进行控制的。两个不能以甲醇作为碳源和能源生长的多形汉逊酵母突变体被证明在甲醇氧化酶合成方面受到影响。