首页> 外文期刊>Biochimica et biophysica acta. Gene structure and expression >Correct targeting of a vacuolar tobacco chitinase in Saccharomyces cerevisiae - post-translational modifications are dependent on the host strain
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Correct targeting of a vacuolar tobacco chitinase in Saccharomyces cerevisiae - post-translational modifications are dependent on the host strain

机译:酿酒酵母中液泡烟草几丁质酶的正确靶向-翻译后修饰取决于宿主菌株

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The chitinase gene FB7-1 of Nicotiana tabacum cv. samsun line 5 was expressed in the two Saccharomyces cerevisiae strains, INVSC2 and H4, under the control of the GAL1 promoter from S. cerevisiae and a multicopy plasmid vector. Both yeast strains express the plant gene as enzymatic active proteins. In transformants of the strain INVSC2, 94% of the total plant chitinase is contained inside the cells, probably within the vacuole which has been confirmed by subcellular fractionation as well as immunohistochemical experiments. This retention inside the cells is due to the C-terminally located 7 amino acids long vacuolar targeting peptide of the prochitinase. When this sequence was removed, chitinase was transported into the culture medium. Pulse-chase experiments revealed that during translation in transformants of both yeast strains one chitinase polypeptide can be immunoadsorbed with specific antibodies. In the case of INVSC2-transformants, newly formed chitinase is modified in a 60 min chase to slightly increase its molecular mass, whereas in H4-transformants the molecular mass constantly remained 32 kDa. By Western blot analysis, two chitinase corresponding polypeptides of 32 and 37 kDa were accumulated in the culture medium of both transformants carrying the chitinase gene without the vacuolar targeting sequence. The larger one was very likely O-glycosylated. Whereas, both polypepitdes were also detected in cell extracts of the H4-transformant, only the smaller one was found in the INVSC2-transformant. The plant chitinase passed through the endoplasmic reticulum on its way to the vacuole. The N-terminal signal peptide responsible for the uptake into the endoplasmic reticulum is cleaved correctly. However, cleavage of the vacuolar targeting peptide located at the C-terminus, to give the mature chitinase is obviously influenced by the genetic background of the host strain. In INVSC2-transformants chitinase accumulates in its mature form whereas both the polypeptides of H4-transformants retain their vacuolar targeting peptide. Our results demonstrate that in the case of plant class I chitinase, the plant sorting signal is recognized in yeast cells but post-translational modifications are influenced by the host strain.
机译:烟草的几丁质酶基因FB7-1。在来自酿酒酵母的GAL1启动子和多拷贝质粒载体的控制下,在两个酿酒酵母菌株INVSC2和H4中表达了samsun 5系。两种酵母菌株均将植物基因表达为酶促活性蛋白。在菌株INVSC2的转化体中,细胞内可能包含94%的总植物几丁质酶,可能在液泡内,这已通过亚细胞分级分离和免疫组织化学实验得到了证实。细胞内的这种保留是由于蛋白酶原的C末端位于7个氨基酸长的液泡靶向肽。当去除该序列时,几丁质酶被运输到培养基中。脉冲追踪实验揭示了在两种酵母菌株的转化体中翻译期间,一种几丁质酶多肽可以被特异性抗体免疫吸附。在INVSC2转化子的情况下,新形成的几丁质酶在60分钟的时间里被修饰以略微增加其分子量,而在H4转化子中,分子量始终保持32 kDa。通过Western印迹分析,在没有液泡靶向序列的两个带有几丁质酶基因的转化体的培养基中积累了32和37kDa的两个几丁质酶对应多肽。较大的一个很可能是O-糖基化的。尽管在H4转化子的细胞提取物中也检测到了两个多肽,但在INVSC2转化子中只发现了较小的一个。植物几丁质酶在到达液泡的过程中穿过内质网。负责摄取内质网的N末端信号肽被正确切割。然而,裂解位于C-末端的液泡靶向肽以得到成熟的几丁质酶显然受到宿主菌株遗传背景的影响。在INVSC2转化子中,几丁质酶以其成熟形式积累,而H4转化子的两个多肽均保留其液泡靶向肽。我们的结果表明,在植物I类几丁质酶的情况下,植物分选信号在酵母细胞中被识别,但是翻译后修饰受到宿主菌株的影响。

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