Institute for Photobiology of Cells and Organelles, Brandeis University, Waltham, Massachusetts 02254.
Plant Physiol. 1986 Jan;80(1):231-8. doi: 10.1104/pp.80.1.231.
Chlorophyll-protein complexes (CPs) obtained from thylakoids of Euglena gracilis Klebs var bacillaris Cori contain the following polypeptides (listed in parentheses in order of prominence after Coomassie R-250 staining of polyacrylamide gels): CP Ia (66, 18, 22, 22.5, 27.5, 21, 28, 24, 25.5, and 26 kilodaltons [kD]); CP I (66 kD); CPx (41 kD); LHCP(2) (an oligomer of LHCP) (26.5, 28, and 26 kD); CPy (27 and 19 kD); CPa (54 kD); and LHCP (26.5, 28, and 26 kD). Mutants of bacillaris low in chlorophyll b (Gr(1)BSL, G(1)BU, and O(4)BSL; Chl a/b [mol/mol] = 50-100) which lack CP Ia, LHCP(2), and LHCP also lack or are deficient in polypeptides associated with these complexes in wild-type cells. Mutants G(1) and O(4), which also lack CPy, lack the CPy-associated polypeptides found in wild-type and Gr(1). Using an antiserum which was elicited by and reacts strongly and selectively with the SDS-treated major polypeptide (26.5 kD) of the LHCP complexes of wild-type, this polypeptide is undetectable in the mutants (<<0.25% of the level in wild-type on a cell basis); the antiserum does not react with the SDS-treated 28 kD polypeptide of the Euglena LHCP complexes and cross-reacts only very weakly with components in SDS-treated cells of Chlamydomonas reinhardtii Dangeard and chloroplasts of Spinacia oleracea L. cv Winter Bloomsdale. Rates of photosynthesis of the wild-type and mutant cells of Euglena are approximately equal on a cell basis when measured at light saturation, consistent with the selective loss of major antenna components but not CP I or CPa from the mutants.
从衣藻变体巴氏杆菌的类囊体中获得的叶绿素蛋白复合物(CPs)含有以下多肽(在考马斯亮蓝 R-250 染色的聚丙烯酰胺凝胶中按突出度顺序列出):CP Ia(66、18、22、22.5、27.5、21、28、24、25.5 和 26 千道尔顿[kD]);CP I(66 kD);CPx(41 kD);LHCP(2)(LHCP 的低聚物)(26.5、28 和 26 kD);CPy(27 和 19 kD);CPa(54 kD);LHCP(26.5、28 和 26 kD)。叶绿素 b 含量低的巴氏杆菌突变体(Gr(1)BSL、G(1)BU 和 O(4)BSL;Chl a/b [mol/mol] = 50-100)缺乏 CP Ia、LHCP(2)和 LHCP,也缺乏或缺乏与野生型细胞中这些复合物相关的多肽。同样缺乏 CPy 的突变体 G(1)和 O(4)也缺乏在野生型和 Gr(1)中发现的 CPy 相关多肽。使用由野生型 LHCP 复合物的 SDS 处理的主要多肽(26.5 kD)诱导并强烈且选择性反应的抗血清,该多肽在突变体中无法检测到(在细胞基础上,<<0.25%的野生型水平);该抗血清不与 Euglena LHCP 复合物的 SDS 处理的 28 kD 多肽反应,仅与 Chlamydomonas reinhardtii Dangeard 的 SDS 处理细胞和 Spinacia oleracea L. cv Winter Bloomsdale 的叶绿体中的成分发生非常弱的交叉反应。当在光饱和下测量时,基于细胞的 Euglena 野生型和突变型细胞的光合作用速率大致相等,这与主要天线成分的选择性丧失一致,但 CP I 或 CPa 从突变体中缺失。