Sleator Roy D
Department of Biological Sciences, Munster Technological University, Cork, Ireland.
FEBS Lett. 2024 Dec;598(23):2831-2835. doi: 10.1002/1873-3468.15043. Epub 2024 Oct 20.
The protein folding problem was, to paraphrase Churchill, 'A riddle wrapped in a mystery inside an enigma'. The riddle, in this context, was the folding code; what interactions at the amino acid level are driving the folding process? The mystery was the kinetic question (Levinthal's paradox); how does the folding process occur so quickly (typically in timescales ranging from μS to mS)? Finally, the enigma represents the computational problem of developing approaches to predict the final folded sate of a protein given only its amino acid sequence. Herein, I trace the path to solving this riddle wrapped in a mystery inside an enigma.
套用丘吉尔的话来说,蛋白质折叠问题就是“一个谜团包裹在一个谜中,而这个谜又深藏于一个不解之谜里”。在此语境下,谜团指的是折叠密码;氨基酸层面的哪些相互作用驱动着折叠过程?谜指的是动力学问题(莱文索尔悖论);折叠过程如何能如此迅速地发生(通常在微秒到毫秒的时间尺度内)?最后,不解之谜代表的是一个计算问题,即如何开发出仅根据蛋白质的氨基酸序列来预测其最终折叠状态的方法。在此,我将探寻解开这个包裹在谜中又深藏于不解之谜里的谜团的路径。