San Pietro Anthony
Department of Biology, Indiana University, Bloomington, IN 47405-3700, USA.
Photosynth Res. 2008 Jun;96(3):185-99. doi: 10.1007/s11120-008-9298-x. Epub 2008 Apr 15.
Emphasis herein is on the early years of my scientific life, primarily in graduate school and at the McCollum-Pratt Institute, Johns Hopkins University, as techniques learned and research performed then became the basis for future scientific endeavors. Studies on the mechanism of conversion of light energy into chemical free energy were a logical consequence of earlier investigations on enzyme-catalyzed hydrogen transfer reactions and pyridine nucleotide coenzyme biochemistry. Identification of several protein factors involved in pyridine nucleotide reduction by illuminated chloroplasts is described and, hopefully, adequately and honestly referenced to complementary research in other laboratories. Coupled with progress were changes in nomenclature of the protein factors and are so noted. In particular, David Wharton proposed the descriptive name, ferredoxin, for the non-heme iron and labile sulfide-containing proteins which serve as redox cofactors in a variety of energy conserving reactions. The inclusion of "Lessons" is adapted from Efraim Racker (1976, A new look at mechanisms in bioenergetics. Academic Press, NY). They are lessons that I learned and are included herein solely for graduate students.
本文重点讲述我科研生涯的早期岁月,主要是在研究生阶段以及在约翰·霍普金斯大学的麦科勒姆 - 普拉特研究所,因为那时学到的技术和开展的研究成为了未来科研工作的基础。对光能转化为化学自由能机制的研究,是早期对酶催化氢转移反应和吡啶核苷酸辅酶生物化学研究的合理延续。文中描述了对参与光照叶绿体还原吡啶核苷酸的几种蛋白质因子的鉴定,希望能充分且诚实地参考其他实验室的互补研究。随着研究进展,蛋白质因子的命名也发生了变化,文中对此也有说明。特别是,大卫·沃顿为一类非血红素铁和含不稳定硫化物的蛋白质提出了描述性名称“铁氧化还原蛋白”,这类蛋白质在多种能量守恒反应中作为氧化还原辅助因子。“经验教训”部分改编自埃弗拉姆·拉克尔(1976年,《生物能量学机制新视角》。学术出版社,纽约)。这些是我学到的经验教训,仅为研究生而收录于此。