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紫花苜蓿花粉粒的生化成分:综述。

Biochemical composition of Phleum pratense pollen grains: A review.

机构信息

Univ. Lille, CNRS, UMR 8522 - PC2A - Physicochimie des Processus de Combustion et de l'Atmosphère, F-59000, Lille, France.

Univ. Lille, CNRS, Inserm, CHU Lille, Institut Pasteur de Lille, U1019 - UMR 9017 - CIIL - Center for Infection and Immunity of Lille, F-59000, Lille, France.

出版信息

Mol Immunol. 2021 Aug;136:98-109. doi: 10.1016/j.molimm.2021.05.014. Epub 2021 Jun 4.

DOI:10.1016/j.molimm.2021.05.014
PMID:34098345
Abstract

The Poaceae family is composed of 12,000 plant species. Some of these species produce highly allergenic anemophilous pollen grains (PGs). Phleum pratense pollen grains (PPPGs) emerged as a model for studies related to grass allergy. The biochemical composition of allergenic PGs has not yet been fully described despite potential health effects of PG constituents other than allergenic proteins. This review brings together the information available in literature aiming at creating a comprehensive picture of the current knowledge about the chemical composition of allergenic PGs from timothy grass. PPPGs have an average diameter between 30-35 μm and the mass of a single PG was reported between 11 and 26 ng. The pollen cytoplasm is filled with two types of pollen cytoplasmic granules (PCGs): the starch granules and the polysaccharide particles (p-particles). Starch granules have a size between 0.6-2.5 μm with an average diameter of 1.1 μm (estimated number of 1000 granules per PG) while p-particles have a size ranging around 0.3 to 0.4 μm (estimated number between 61,000-230,000 p-particles per PG). The rupture of PG induces the release of PCGs and the dispersion of allergens in the inhalable fraction of atmospheric aerosol. PPPGs are composed of sporopollenin, sugars, polysaccharides, starch, glycoproteins (including allergens), amino-acids, lipids, flavonoids (including isorhamnetin), various elements (the more abundant being Si, Mg and Ca), phenolic compounds, phytoprostanoids, carotenoids (pigments) metals and adsorbed pollutants. PPPG contains about a hundred different proteins with molecular masses ranging from 10 to 94 kDa, with isoelectric points from 3.5-10.6. Among these proteins, allergens are classified in eleven groups from 1 to 13 with allergens from groups 1 and 5 being the major contributors to Phl p pollen allergy. Major allergen Phl p 5 was quantified in PPPGs by several studies with concentration ranging from 2.7 and 3.5 μg.mg in unpolluted environment. Values for other allergens are scarce in literature; only one quantitative assessment exists for allergen groups Phl p 1, 2 and 4. The extractible lipid fraction of PPPGs is estimated between 1.7-2.2% of the total PG mass. The main chemical families of lipids reported in PPPGs are: alkanes, alkenes, alcohols, saturated and unsaturated fatty acids, di- and tri-hydroxylated fatty acids, aldehydes and sterols. Several lipid compounds with potential adjuvant effects on allergy have been specifically quantified in PPPGs: E2-like prostaglandin (PGE2), B4-like leukotriene (LTB4), unsaturated fatty acids (linoleic and linolenic acids and their hydroxylated derivatives), adenosine, vitamins and phenolic compounds. Some other biochemical characteristics such as NAD(P)H oxidase, protease activity and pollen microbiome were described in the literature. The bioaccessibility in physiological conditions has not been described for most biochemicals transported by allergenic PPPGs. There is also a considerable lack of knowledge about the potential health effects of pollen constituents other than allergens. The variability of pollen composition remains also largely unknown despite its importance for plant reproduction and allergy in an environment characterized by chemical pollution, climate change and loss of biodiversity.

摘要

禾本科植物家族由 12000 种植物组成。其中一些物种产生高度致敏的风媒花粉粒(PGs)。梯牧草花粉粒(PPPGs)成为研究草过敏相关问题的模型。尽管花粉成分中的除过敏原蛋白以外的其他成分可能对健康有影响,但致敏 PG 的生化组成尚未得到充分描述。本综述汇集了文献中的现有信息,旨在全面描述梯牧草致敏 PG 的化学成分的现有知识。PPPGs 的平均直径在 30-35 μm 之间,单个 PG 的质量据报道在 11 到 26 ng 之间。花粉细胞质中充满了两种类型的花粉细胞质粒(PCGs):淀粉粒和多糖颗粒(p-颗粒)。淀粉粒的大小在 0.6-2.5 μm 之间,平均直径为 1.1 μm(估计每个 PG 中有 1000 个淀粉粒),而 p-颗粒的大小约为 0.3 到 0.4 μm(估计每个 PG 中有 61000-230000 个 p-颗粒)。PG 的破裂导致 PCGs 的释放和过敏原在大气气溶胶可吸入部分的分散。PPPGs 由孢粉素、糖、多糖、淀粉、糖蛋白(包括过敏原)、氨基酸、脂类、类黄酮(包括异鼠李素)、各种元素(更丰富的是 Si、Mg 和 Ca)、酚类化合物、植物前列腺素、类胡萝卜素(色素)、金属和吸附污染物组成。PPPG 含有约 100 种不同的蛋白质,分子量范围从 10 到 94 kDa,等电点从 3.5 到 10.6。在这些蛋白质中,过敏原分为 11 组,从 1 到 13,其中组 1 和 5 的过敏原是导致 Phl p 花粉过敏的主要原因。主要过敏原 Phl p 5 在 PPPGs 中的含量已被多项研究量化,未受污染环境中的浓度范围为 2.7 至 3.5 μg.mg。其他过敏原的数值在文献中很少见;只有一项针对过敏原组 Phl p 1、2 和 4 的定量评估存在。PPPGs 中可提取脂质部分估计占总 PG 质量的 1.7-2.2%。PPPGs 中报告的主要脂质化学家族是:烷烃、烯烃、醇、饱和和不饱和脂肪酸、二羟基和三羟基脂肪酸、醛和甾醇。已经在 PPPGs 中具体量化了几种具有潜在佐剂作用的脂质化合物:E2 样前列腺素(PGE2)、B4 样白三烯(LTB4)、不饱和脂肪酸(亚油酸和亚麻酸及其羟基衍生物)、腺苷、维生素和酚类化合物。文献中还描述了一些其他生化特性,如 NAD(P)H 氧化酶、蛋白酶活性和花粉微生物组。大多数由致敏 PPPGs 转运的生化物质的生理条件下的生物利用度尚未被描述。除过敏原以外的花粉成分的潜在健康影响也知之甚少。尽管花粉组成的变异性对化学污染、气候变化和生物多样性丧失的环境中的植物繁殖和过敏很重要,但花粉组成的变异性也在很大程度上未知。

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