Department of Plant Biology, Department of Biochemistry, and the Center of Biophysics & Quantitative Biology, University of Illinois at Urbana-Champaign, Urbana, IL, 61801, USA.
Albertus Perkstraat 35, 1217 NL, Hilversum, The Netherlands.
Photosynth Res. 2024 Jun;160(2-3):125-142. doi: 10.1007/s11120-024-01102-9. Epub 2024 Apr 30.
We present here the research contributions of Jan Amesz (1934-2001) on deciphering the details of the early physico-chemical steps in oxygenic photosynthesis in plants, algae and cyanobacteria, as well as in anoxygenic photosynthesis in purple, green, and heliobacteria. His research included light absorption and the mechanism of excitation energy transfer, primary photochemistry, and electron transfer steps until the reduction of pyridine nucleotides. Among his many discoveries, we emphasize his 1961 proof, with L. N. M. Duysens, of the "series scheme" of oxygenic photosynthesis, through antagonistic effects of Light I and II on the redox state of cytochrome f. Further, we highlight the following research on oxygenic photosynthesis: the experimental direct proof that plastoquinone and plastocyanin function at their respective places in the Z-scheme. In addition, Amesz's major contributions were in unraveling the mechanism of excitation energy transfer and electron transport steps in anoxygenic photosynthetic bacteria (purple, green and heliobacteria). Before we present his research, focusing on his key discoveries, we provide a glimpse of his personal life. We end this Tribute with reminiscences from three of his former doctoral students (Sigi Neerken; Hjalmar Pernentier, and Frank Kleinherenbrink) and from several scientists (Suleyman Allakhverdiev; Robert Blankenship; Richard Cogdell) including two of the authors (G. Garab and A. Stirbet) of this Tribute.
我们在这里介绍扬·埃姆斯(Jan Amesz)(1934-2001 年)在阐明植物、藻类和蓝细菌的放氧光合作用以及紫色、绿色和嗜盐菌的厌氧光合作用的早期物理化学步骤的细节方面的研究贡献。他的研究包括光吸收和激发能转移机制、初级光化学和电子转移步骤,直到吡啶核苷酸的还原。在他的许多发现中,我们强调他 1961 年与 L.N.M.杜伊森斯(L.N.M. Duysens)一起证明的放氧光合作用的“系列方案”,通过光 I 和 II 对细胞色素 f 的氧化还原状态的拮抗作用。此外,我们强调了以下关于放氧光合作用的研究:实验直接证明质体醌和质体蓝素在 Z 方案中分别在其各自的位置发挥作用。此外,埃姆斯在阐明厌氧光合作用细菌(紫色、绿色和嗜盐菌)中的激发能转移和电子传递步骤的机制方面做出了重大贡献。在介绍他的研究之前,我们重点介绍他的关键发现,并简要介绍他的个人生活。我们以三位他以前的博士生(西吉·内肯;Hjalmar Pernentier 和弗兰克·克莱因赫伦布林克)和几位科学家(Suleyman Allakhverdiev;Robert Blankenship;Richard Cogdell)的回忆结束了这篇致敬文章,其中包括两位本文的作者(G. Garab 和 A. Stirbet)。