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花生蛋白的免疫化学研究,特别涉及贮藏蛋白。II. 发芽过程中的蛋白质修饰

Immunochemical Studies on Arachis hypogaea Proteins With Particular Reference to the Reserve Proteins. II. Protein Modification During Germination.

作者信息

Daussant J, Neucere N J, Conkerton E J

机构信息

Southern Utilization Research and Development Division, Agricultural Research Service, United States Department of Agriculture, New Orleans, Louisiana 70119.

出版信息

Plant Physiol. 1969 Apr;44(4):480-4. doi: 10.1104/pp.44.4.480.

Abstract

alpha-Conarachin and alpha-arachin are metabolized differently during germination. The amount of alpha-conarachin decreases without the appearance of antigenic intermediary compounds. alpha-Arachin retains its original antigenic structure and becomes more anodic during germination, but a number of intermediary proteins, differing widely in electrophoretic mobility, form up to 14 days germination. The electrophoretic shift of alpha-arachin, detectable after 1 day of germination, might be caused by progressive deamidation of glutamine and asparagine. Decreases in amide content of protein extracted after germination support the hypothesis and suggest that alpha-arachin provides the first source of ammonia to the new seedling.New antigenic proteins are synthesized in both roots and cotyledons during germination. Some appear organ specific, whereas others are identical in both the cotyledons and the roots. Appearance and disappearance of each new protein is unique with respect to period of germination and hence might correspond to specific events of germination.

摘要

α-伴花生球蛋白和α-花生球蛋白在萌发过程中的代谢方式不同。α-伴花生球蛋白的量减少,且未出现抗原性中间化合物。α-花生球蛋白保留其原始抗原结构,在萌发过程中向阳极迁移,但在长达14天的萌发过程中会形成许多电泳迁移率差异很大的中间蛋白。萌发1天后可检测到的α-花生球蛋白的电泳迁移可能是由谷氨酰胺和天冬酰胺的逐步脱酰胺作用引起的。萌发后提取的蛋白质酰胺含量的降低支持了这一假设,并表明α-花生球蛋白为新幼苗提供了氨的首个来源。

萌发过程中,根和子叶都会合成新的抗原蛋白。有些蛋白表现出器官特异性,而另一些在子叶和根中是相同的。每种新蛋白的出现和消失在萌发时期方面都是独特的,因此可能与萌发的特定事件相对应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ffb/396113/83ec1c409fa8/plntphys00209-0012-a.jpg

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