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藻胆体由 Nostoc 和 Fremyella 的藻胆蛋白形成杂交体。

Formation of hybrid phycobilisomes by association of phycobiliproteins from Nostoc and Fremyella.

机构信息

Radiation Biology Laboratory, Smithsonian Institution, 12441 Parklawn Drive, Rockville, Maryland 20852.

出版信息

Proc Natl Acad Sci U S A. 1982 Sep;79(17):5277-81. doi: 10.1073/pnas.79.17.5277.

Abstract

Formation of phycobilisomes has been accomplished in vitro from isolated phycobiliprotein fractions obtained from the same blue-green alga (intrageneric) and from different blue-green algae (intergeneric). Phycobilisomes, which are supra-molecular complexes of phycobiliproteins, serve as major light-harvesting antennae for photosynthesis in blue-green and red algae. Intrageneric association into energetically functional phycobilisomes, previously reported to occur with Nostoc sp. allophycocyanin and phycoerythrin-phycocyanin complexes [Canaani, O., Lipschultz, C. A. & Gantt, E. (1980) FEBS Lett. 115, 225-229], has been obtained with Fremyella diplosiphon. By their spectral properties (absorption, fluorescence excitation, and emission) and electron microscopic images, the native and in vitro-associated phycobilisomes were virtually indistinguishable. Intergeneric phycobilisomes have been produced from allophycocyanin of Nostoc sp. strain Mac. and phycoerythrin-phycocyanin of F. diplosiphon, as well as from the reverse mixtures. The yield of intergeneric phycobilisomes, favored by higher phycobiliprotein content in 0.75 M phosphate, pH 7.0/2.0 M sucrose, was 40-60%. Energy transfer to the terminal long-wavelength-emitting allophycocyanin in the phycobilisomes was evident from the 670-675 nm fluorescence emission peaks. Furthermore, excitation spectra showed the contribution of the respective phycoerythrins (Fremyella, lambda(max) 570; Nostoc, lambda(max) 573 and 553 nm), as well as that of phycocyanin and short-wavelength-absorbing allophycocyanin. Phycobilisomes of Nostoc and Fremyella, analyzed by NaDodSO(4)/polyacrylamide gel electrophoresis, possessed a number of polypeptides having similar molecular weights: the usual alpha- and beta-phycobilin-containing polypeptides of M(r) 15,000-22,000, a faint band at M(r)ca. 95,000, and a prominent band at M(r)ca. 31,000. The M(r) 31,000 polypeptide is assumed to provide the recognition site for attachment of the phycoerythrin-phycocyanin complexes with the allophycocyanin core. In vitro association was not obtained between allophycocyanin from Nostoc and phycoerythrin-phycocyanin complexes from Phormidium persicinum or Porphyridium sordidum.

摘要

藻胆体的形成已经在体外从同一种蓝藻(种内)和不同的蓝藻(种间)中分离的藻胆蛋白级分中完成。藻胆体是藻胆蛋白的超分子复合物,是蓝藻和红藻光合作用的主要光捕获天线。先前报道的 Nostoc sp. 别藻蓝蛋白和藻红蛋白-藻蓝蛋白复合物 [Canaani,O.,Lipschultz,C. A. 和 Gantt,E.(1980)FEBS Lett. 115,225-229] 中,同种藻胆体的能量功能化已经在 Fremyella diplosiphon 中得到证实。通过其光谱特性(吸收、荧光激发和发射)和电子显微镜图像,天然和体外结合的藻胆体几乎无法区分。来自 Nostoc sp. Mac 的藻蓝蛋白和 Fremyella diplosiphon 的藻红蛋白-藻蓝蛋白复合物以及它们的反向混合物都产生了种间藻胆体。在 0.75 M 磷酸盐、pH 7.0/2.0 M 蔗糖中,藻蓝蛋白含量较高有利于种间藻胆体的产生,产率为 40-60%。藻胆体中末端长波长发射的别藻蓝蛋白的能量转移从 670-675nm 荧光发射峰中显而易见。此外,激发光谱显示了各自藻红蛋白(Fremyella,lambda(max) 570;Nostoc,lambda(max) 573 和 553nm)以及藻蓝蛋白和短波长吸收的别藻蓝蛋白的贡献。通过 NaDodSO(4)/聚丙烯酰胺凝胶电泳分析的 Nostoc 和 Fremyella 藻胆体具有许多具有相似分子量的多肽:通常的 alpha-和 beta-藻胆素含有 M(r) 15,000-22,000 的多肽、分子量约为 95,000 的微弱带和分子量约为 31,000 的明显带。假定 M(r) 31,000 多肽提供了藻红蛋白-藻蓝蛋白复合物与别藻蓝蛋白核心附着的识别位点。在体外,Nostoc 的藻蓝蛋白与 Phormidium persicinum 或 Porphyridium sordidum 的藻红蛋白-藻蓝蛋白复合物之间未获得结合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ea61/346879/d89258393c79/pnas00456-0166-a.jpg

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