Becker C, Senyuk V I, Shutov A D, Nong V H, Fischer J, Horstmann C, Müntz K
Institut für Pflanzengenetik und Kulturpflanzenforschung, Gatersleben, Germany.
Eur J Biochem. 1997 Sep 1;248(2):304-12. doi: 10.1111/j.1432-1033.1997.00304.x.
Proteinase A is a papain-like cysteine endopeptidase of vetch (Vicia sativa L.) which was assumed to initiate storage-globulin breakdown just after the onset of seed germination. This enzyme was purified from cotyledons of vetch seedlings. On gelatin-containg SDS gels, active proteinase A migrated with an apparent molecular mass of 21 kDa, whereas after heat denaturation its molecular size on SDS/PAGE was 29 kDa. Although proteinase A is capable of hydrolyzing storage globulins in vitro it could not be localized in the protein-body fraction of cotyledons from germinating seeds. cDNA clones encoding proteinase A precursor have been obtained by PCR. The precursor is composed of an N-terminal signal sequence followed by a propeptide, the region encoding mature proteinase A, and a C-terminal KDEL sequence. Mature proteinase A with a derived molecular mass of 25,244 Da does not have the KDEL sequence. The derived amino acid sequence of the proteinase A precursor is 78.2% identical to sulfhydryl-endopeptidase (SH-EP), a cysteine endopeptidase from germinating Vigna mungo seedlings. Northern blot analysis indicated that proteinase A mRNA appears de novo in cotyledons of 1-day-germinated vetch seeds, where its amount increases up to day 6. No proteinase A mRNA was detected in other vetch organs, not even in the embryo axis, which contains stored globulins. By means of antibodies raised against the purified and against recombinantly produced proteinase A, the 29-kDa bands of mature proteinase A were detected in cotyledon extracts of 6-day-germinated seeds when globulin degradation has already far proceeded. The reported data do not agree with the proposed triggering role of proteinase A in storage-globulin breakdown during germination.
蛋白酶A是野豌豆(Vicia sativa L.)中一种类似于木瓜蛋白酶的半胱氨酸内肽酶,被认为在种子萌发开始后就启动储存球蛋白的分解。这种酶是从野豌豆幼苗的子叶中纯化出来的。在含明胶的SDS凝胶上,活性蛋白酶A迁移时的表观分子量为21 kDa,而热变性后其在SDS/PAGE上的分子大小为29 kDa。尽管蛋白酶A在体外能够水解储存球蛋白,但在萌发种子子叶的蛋白体部分中却未能定位到它。通过PCR已获得了编码蛋白酶A前体的cDNA克隆。前体由一个N端信号序列、一个前肽、编码成熟蛋白酶A的区域以及一个C端KDEL序列组成。推导分子量为25,244 Da的成熟蛋白酶A没有KDEL序列。蛋白酶A前体的推导氨基酸序列与来自萌发的绿豆幼苗的半胱氨酸内肽酶巯基内肽酶(SH-EP)有78.2%的同一性。Northern印迹分析表明,蛋白酶A mRNA在萌发1天的野豌豆种子的子叶中从头出现,其含量在第6天前一直增加。在野豌豆的其他器官中未检测到蛋白酶A mRNA,甚至在含有储存球蛋白的胚轴中也未检测到。借助针对纯化的和重组产生的蛋白酶A制备的抗体,在球蛋白降解已经大量进行的6天萌发种子的子叶提取物中检测到了成熟蛋白酶A的29 kDa条带。所报道的数据与蛋白酶A在萌发期间储存球蛋白分解中所提出的触发作用不一致。