Bhalla P L, Swoboda I, Singh M B
Plant Molecular Biology and Biotechnology Laboratory, Institute of Land and Food Resources, University of Melbourne, Parkville, Victoria 3052, Australia.
Proc Natl Acad Sci U S A. 1999 Sep 28;96(20):11676-80. doi: 10.1073/pnas.96.20.11676.
Type 1 allergic reactions, such as hay fever and allergic asthma, triggered by grass pollen allergens are a global health problem that affects approximately 20% of the population in cool, temperate climates. Ryegrass is the dominant source of allergens because of its prodigious production of airborne pollen. Lol p 5 is the major allergenic protein of ryegrass pollen, judging from the fact that almost all of the individuals allergic to grass pollen show presence of serum IgE antibodies against this protein. Moreover, nearly two-thirds of the IgE reactivity of ryegrass pollen has been attributed to this protein. Therefore, it can be expected that down-regulation of Lol p 5 production can significantly reduce the allergic potential of ryegrass pollen. Here, we report down-regulation of Lol p 5 with an antisense construct targeted to the Lol p 5 gene in ryegrass. The expression of antisense RNA was regulated by a pollen-specific promoter. Immunoblot analysis of proteins with allergen-specific antibodies did not detect Lol p 5 in the transgenic pollen. The transgenic pollen showed remarkably reduced allergenicity as reflected by low IgE-binding capacity of pollen extract as compared with that of control pollen. The transgenic ryegrass plants in which Lol p 5 gene expression is perturbed showed normal fertile pollen development, indicating that genetic engineering of hypoallergenic grass plants is possible.
由草花粉过敏原引发的1型过敏反应,如花粉症和过敏性哮喘,是一个全球性的健康问题,在凉爽的温带气候中影响着约20%的人口。黑麦草因其大量产生气传花粉而成为主要的过敏原来源。从几乎所有对草花粉过敏的个体血清中都存在针对这种蛋白质的IgE抗体这一事实来看,Lol p 5是黑麦草花粉的主要致敏蛋白。此外,黑麦草花粉近三分之二的IgE反应性都归因于这种蛋白质。因此,可以预期下调Lol p 5的产生能够显著降低黑麦草花粉的过敏潜能。在此,我们报道了利用靶向黑麦草Lol p 5基因的反义构建体下调Lol p 5。反义RNA的表达由花粉特异性启动子调控。用过敏原特异性抗体对蛋白质进行免疫印迹分析未在转基因花粉中检测到Lol p 5。与对照花粉相比,转基因花粉提取物的IgE结合能力较低,这表明转基因花粉的致敏性显著降低。Lol p 5基因表达受到干扰的转基因黑麦草植株花粉发育正常且可育,这表明培育低致敏性草类植物的基因工程是可行的。