Kossmann J, Abel G J, Springer F, Lloyd J R, Willmitzer L
Max-Planck-Institut für molekulare Pflanzenphysiologie, Golm, Germany.
Planta. 1999 Jun;208(4):503-11. doi: 10.1007/s004250050587.
Three isoforms of starch synthase (SS) were shown to be present in soluble potato tuber extracts by activity staining after native gel electrophoresis. A cDNA encoding SSI from rice was used as a probe to clone a corresponding cDNA from potato. The deduced amino acid sequence identified the protein as an SS from potato with an M(r) of 70.6 kDa for the immature enzyme including its transit peptide. This novel isoform was designated SSI. An analysis of the expression pattern of the gene indicated that SSI is predominantly expressed in sink and source leaves, and, to a lower extent in tubers. In several independent transgenic potato lines, where the expression of SSI was repressed using the antisense approach, the activity of a specific SS isoform was reduced to non-detectable levels as determined through activity staining after native gel electrophoresis. The reduction in the amount of this isoform of SS did not lead to any detectable changes in starch structure, probably due to the fact that this isoform only represents a minor activity in potato tubers.
通过天然凝胶电泳后的活性染色表明,在可溶性马铃薯块茎提取物中存在三种淀粉合酶(SS)同工型。以水稻编码SSI的cDNA为探针,从马铃薯中克隆出相应的cDNA。推导的氨基酸序列鉴定该蛋白为马铃薯的一种SS,未成熟酶(包括其转运肽)的分子量为70.6 kDa。这种新的同工型被命名为SSI。对该基因表达模式的分析表明,SSI主要在库叶和源叶中表达,在块茎中的表达程度较低。在几个独立的转基因马铃薯株系中,采用反义方法抑制SSI的表达,通过天然凝胶电泳后的活性染色测定,一种特定SS同工型的活性降低到无法检测的水平。这种SS同工型数量的减少并未导致淀粉结构出现任何可检测到的变化,这可能是因为该同工型在马铃薯块茎中仅代表一种次要活性。