Department of Biological Sciences, State University of New York at Binghamton, Binghamton, NY 13902, USA.
Physiol Plant. 2012 May;145(1):140-53. doi: 10.1111/j.1399-3054.2011.01535.x. Epub 2011 Dec 1.
The mobilization of seed storage proteins upon seed imbibition and germination is a crucial process in the establishment of the seedling. Storage proteins fold compactly, presenting only a few vulnerable regions for initial proteolytic digestion. Evolutionarily related storage proteins have similar three-dimensional structure, and thus tend to be initially cleaved at similar sites. The initial cleavage makes possible subsequent rapid and extensive breakdown catalyzed by endo- and exopeptidases. The proteolytic enzymes that degrade the storage proteins during mobilization identified so far are mostly cysteine proteases, but also include serine, aspartic and metalloproteases. Plants often ensure early initiation of storage protein mobilization by depositing active proteases during seed maturation, in the very compartments where storage proteins are sequestered. Various means are used in such cases to prevent proteolytic attack until after imbibition of the seed with water. This constraint, however, is not always enforced as the dry seeds of some plant species contain proteolytic intermediates as a result of limited proteolysis of some storage proteins. Besides addressing fundamental questions in plant protein metabolism, studies of the mobilization of storage proteins will point out proteolytic events to avoid in large-scale production of cloned products in seeds. Conversely, proteolytic enzymes may be applied toward reduction of food allergens, many of which are seed storage proteins.
种子在吸水萌发时会动员贮藏蛋白,这是幼苗建立的关键过程。贮藏蛋白折叠紧密,只有少数脆弱区域可被初始蛋白水解消化。进化相关的贮藏蛋白具有相似的三维结构,因此往往会在相似的位置被初始切割。初始切割使得内肽酶和外肽酶能够随后进行快速和广泛的降解。到目前为止,在种子萌发过程中,被鉴定出的参与贮藏蛋白降解的蛋白水解酶主要是半胱氨酸蛋白酶,但也包括丝氨酸、天冬氨酸和金属蛋白酶。植物通常通过在贮藏蛋白被隔离的部位在种子成熟期间沉积活性蛋白酶,从而确保贮藏蛋白的早期动员。在这种情况下,植物会使用各种手段来防止蛋白水解攻击,直到种子吸水为止。然而,这种限制并不总是强制执行,因为一些植物种子的干种子中含有由于某些贮藏蛋白的有限水解而产生的蛋白水解中间产物。除了阐明植物蛋白代谢中的基本问题外,对贮藏蛋白动员的研究还将指出在种子中大规模生产克隆产物时应避免的蛋白水解事件。相反,蛋白水解酶可用于减少食物过敏原,其中许多是种子贮藏蛋白。