首页> 美国卫生研究院文献>Plant Physiology >The N-terminal propeptide of the precursor to sporamin acts as a vacuole-targeting signal even at the C terminus of the mature part in tobacco cells.
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The N-terminal propeptide of the precursor to sporamin acts as a vacuole-targeting signal even at the C terminus of the mature part in tobacco cells.

机译:Sporamin的前体的N末端前肽甚至在烟草细胞中成熟部分的C端也可作为液泡靶向信号。

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摘要

An asparagine-proline-isoleucine-arginine-leucine (NPIRL) and its related sequences in the N-terminal propeptides (NTPP) of several plant vacuolar proteins, including that of sporamin from sweet potato (SPO) function as vacuole-targeting determinants in a manner that is distinct from the vacuole-targeting determinant in the CTPPs of other plant vacuolar proteins. When the mutant precursor to sporamin, SPO-NTPP (in which NTPP was moved to the C terminus of the mature part), was expressed in tobacco (Nicotiana tabacum) cells, the pro-form was efficiently targeted to the vacuole and the NTPP was cleaved off. Unlike the results obtained with the wild-type precursor, substitution of the NPIRL sequence in the C-terminally located NTPP to asparagine-proline-glycine-arginine-leucine in the SPO-isoleucine-28-to-glycine mutant resulted in missorting of less than 20% of the pro-form to the medium. Unlike the vacuolar transport of SPO-NTPP, the vacuolar transport of SPO-isoleucine-28-to-glycine was strongly inhibited by 33 microM wortmannin, which is similar to the C-terminal propeptide-mediated vacuolar transport. These results suggest that the vacuole-targeting function of the NPIRL sequence is not strictly dependent on its location at the N terminus of a protein and that the C-terminally located mutant NTPP acquired some physicochemical properties of the C-terminal vacuole-targeting sequence.
机译:天冬酰胺-脯氨酸-异亮氨酸-精氨酸-亮氨酸(NPIRL)及其相关序列在几种植物液泡蛋白的N末端前肽(NTPP)中,包括甘薯中的孢菌素(SPO)的液泡定位决定簇。与其他植物液泡蛋白CTPP中的液泡靶向决定子不同的方法。当孢子素的突变体前体SPO-NTPP(NTPP移至成熟部分的C末端)在烟草(Nicotiana tabacum)细胞中表达时,该前体有效地靶向了液泡,而NTPP为劈开。与野生型前体获得的结果不同,SPO-异亮氨酸-28-甘氨酸突变体中C末端NTPP中的NPIRL序列被天冬酰胺-脯氨酸-甘氨酸-精氨酸-亮氨酸取代超过原形式的20%。与SPO-NTPP的液泡运输不同,SPO-异亮氨酸28-甘氨酸的液泡运输受到33 microM渥曼青霉素的强烈抑制,这与C末端前肽介导的液泡运输相似。这些结果表明,NPIRL序列的液泡靶向功能并不严格取决于其在蛋白质N末端的位置,并且C端定位的突变体NTPP获得了C端液泡靶向序列的一些理化性质。

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