Institute for Photobiology of Cells and Organelles, Brandeis University, Waltham, Massachusetts 02254.
Plant Physiol. 1986 Jan;80(1):223-30. doi: 10.1104/pp.80.1.223.
The use of n-octyl-beta-d-glucopyranoside along with sodium dodecyl sulfate improves the retention of chlorophyll (Chl) by chlorophyll-protein complexes (CPs) prepared from thylakoids of Euglena gracilis Klebs var bacillaris Cori and yields several additional complexes. Thylakoids from wild-type (WT) cells, solubilized in these detergents and subjected to polyacrylamide gel electrophoresis at 0 degrees C, yield the following CPs, in order of relative molecular weight, containing the pigments shown in parentheses with their respective molar ratios where determined: CP Ia (Chl a, diadinoxanthin and beta-carotene; 100:12:5); CP I (Chl a and beta-carotene; 100:6-12); CPx (Chl and carotenoids); LHCP(2) (light-harvesting CP oligomer) (Chl a, Chl b, diadinoxanthin and neoxanthin; 12:4:3:1); CPy (Chl a, diadinoxanthin and beta-carotene; 100:14:8); CPa (Chl a and beta-carotene; 100:18-25) and LHCP (monomer) (Chl a, Chl b, diadinoxanthin and neoxanthin; 12:6:4:1). The LHCP complexes retain up to 40% of the total Chl and 80% of the Chl b in the thylakoids. CP Ia contains only a trace of Chl b (Chl a/b [mol/mol] = 62). The lower amount of Chl b in Euglena (about 10% of Chl a + b) compared to higher plants (about 30% of Chl a + b) is probably a consequence of the lower Chl b (relative to Chl a) in the LHCPs of Euglena rather than of fewer LHCPs being present. G(1)BU, Gr(1)BSL, and O(4)BSL, mutants of bacillaris low in Chl b (1-2% of Chl a + b), lack the CP Ia, LHCP, and LHCP(2) found in wildtype (WT); G(1) and O(4) also lack CPy. The mutants contain reduced amounts of Chl a (two-thirds of WT in Gr(1) and one-third in G(1) and O(4)) and neoxanthin (20-40% of WT) but retain levels of beta-carotene and diadinoxanthin close to those in cells of WT. The CPs remaining in the mutants have pigment compositions very similar to their counterparts from WT.
使用正辛基-β-D-吡喃葡萄糖苷和十二烷基硫酸钠可提高从衣藻小体(Euglena gracilis Klebs var bacillaris Cori)制备的叶绿素-蛋白复合物(CPs)对叶绿素的保留率,并产生几个额外的复合物。在这些去污剂中溶解的野生型(WT)细胞的类囊体,在 0 摄氏度下进行聚丙烯酰胺凝胶电泳,得到以下 CP,按相对分子量顺序排列,其中包含括号中的色素及其各自的摩尔比,如下所示:CP Ia(叶绿素 a、二氢玉米黄质和β-胡萝卜素;100:12:5);CP I(叶绿素 a 和 β-胡萝卜素;100:6-12);CPx(叶绿素和类胡萝卜素);LHCP(2)(光捕获 CP 低聚物)(叶绿素 a、叶绿素 b、二氢玉米黄质和新黄质;12:4:3:1);CPy(叶绿素 a、二氢玉米黄质和β-胡萝卜素;100:14:8);CPa(叶绿素 a 和 β-胡萝卜素;100:18-25)和 LHCP(单体)(叶绿素 a、叶绿素 b、二氢玉米黄质和新黄质;12:6:4:1)。LHCP 复合物在类囊体中保留高达 40%的总叶绿素和 80%的叶绿素 b。CP Ia 仅含有痕量的叶绿素 b(叶绿素 a/b [mol/mol]=62)。与高等植物相比(叶绿素 a+b 的约 30%),衣藻中的叶绿素 b 含量较低(约 10%的叶绿素 a+b)可能是由于衣藻中的 LHCP 中叶绿素 b (相对于叶绿素 a)较低,而不是存在较少的 LHCP。叶绿素 b 含量低(叶绿素 a+b 的 1-2%)的 bacillaris 突变体 G(1)BU、Gr(1)BSL 和 O(4)BSL 缺乏在野生型(WT)中发现的 CP Ia、LHCP 和 LHCP(2);G(1)和 O(4)也缺乏 CPy。突变体中叶绿素 a 的含量减少(Gr(1)的三分之二和 G(1)和 O(4)的三分之一)和新黄质(WT 的 20-40%),但保留了接近 WT 细胞的β-胡萝卜素和二氢玉米黄质水平。突变体中残留的 CP 具有与 WT 对应物非常相似的色素组成。