首页> 美国卫生研究院文献>Plant Physiology >Appearance of type 1 2 and 3 light-harvesting complex II and light-harvesting complex I proteins during light-induced greening of barley (Hordeum vulgare) etioplasts.
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Appearance of type 1 2 and 3 light-harvesting complex II and light-harvesting complex I proteins during light-induced greening of barley (Hordeum vulgare) etioplasts.

机译:大麦(大麦)胞质体光诱导绿化过程中1、2和3型集光复合物II和集光复合物I蛋白的外观。

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摘要

Monospecific antibodies directed against typical domains of type 1, 2, and 3 light-harvesting complex (LHC) II apoproteins have been used (a) to identify these apoproteins on denaturing sodium dodecyl sulfate gels of barley (Hordeum vulgare) thylakoids, (b) to determine their distribution between grana and stroma membranes, and (c) to follow their accumulation during light-induced greening of etioplasts. In addition, we have studied the light-induced assembly of chlorophyll-protein complexes with a native green gel system (K.D. Allen, L.A. Staehelin [1991] Anal Biochem 194: 214-222). Western blot analysis of the three major LHCII apoprotein bands has identified the highest molecular mass band at 27.5 kD as containing the type 2 LHCII apoproteins, the middle band at 26.9 kD as containing the type 1 LHCII apoproteins, and the lowest band at 26.0 kD as containing the type 3 LHCII apoproteins. During light-induced greening of 6-d-old etiolated barley seedlings, the type 1, 2, and 3 LHCII apoproteins accumulate simultaneously and at similar rates but appear somewhat sooner (< 4 h) in thylakoids from apical than from basal (4-8 h) leaf segments. LHCI polypeptides accrue with similar kinetics, whereas the 33-kD oxygen-evolving complex polypeptides can be detected already in the 0-h light samples. During the most rapid phase of thylakoid development (8-24 h), two slightly larger (28.3 and 28.7 kD) type 2 LHCII apoproteins (precursor intermediates?) also accumulate in the thylakoids. No corresponding higher molecular mass forms of type 1 and 3 LHCII apoproteins could be detected. It is interesting that differences are still apparent in the composition of chlorophyll-protein complexes of light-control plants and those of etiolated plants greened for 8 d.
机译:已经使用针对1、2、3型光捕获复合体(LHC)II载脂蛋白典型结构域的单特异性抗体(a)在大麦(大麦)类囊体变性的十二烷基硫酸钠硫酸钠凝胶上鉴定这些载脂蛋白,(b)确定它们在颗粒膜和基质膜之间的分布,以及(c)在光诱导的原生质体绿化过程中跟踪它们的积累。另外,我们用天然绿色凝胶系统研究了光诱导的叶绿素-蛋白质复合物的组装(K.D.Allen,L.A.Staehelin [1991] Anal Biochem 194:214-222)。对三个主要LHCII载脂蛋白条带的蛋白质印迹分析已确定,在27.5 kD处最高分子量带为2型LHCII载脂蛋白,在26.9 kD处中带为1型LHCII载脂蛋白,最低条带为26.0 kD。包含3型LHCII载脂蛋白。在6d大黄化大麦幼苗的光诱导绿化过程中,类型1、2和3的LHCII载脂蛋白同时积累且速率相似,但在类囊体中,根尖细胞比基部细胞更快(<4小时)(4- 8 h)叶段。 LHCI多肽具有相似的动力学,而33 kD析出氧的复杂多肽可以在0小时的光样本中检测到。在类囊体发育的最快速阶段(8-24小时),在类囊体中也积累了两个稍大(28.3和28.7 kD)的2型LHCII载脂蛋白(前体中间体?)。没有检测到相应的1型和3型LHCII载脂蛋白的更高分子量形式。有趣的是,光控制植物和绿化8 d的黄化植物的叶绿素-蛋白质复合物的组成仍然存在明显差异。

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