Sauter N K, Mau T, Rader S D, Agard D A
Howard Hughes Medical Institute, University of California, San Francisco, 94143-0448, USA.
Nat Struct Biol. 1998 Nov;5(11):945-50. doi: 10.1038/2919.
While the majority of proteins fold rapidly and spontaneously to their native states, the extracellular bacterial protease alpha-lytic protease (alphaLP) has a t(1/2) for folding of approximately 2,000 years, corresponding to a folding barrier of 30 kcal mol(-1). AlphaLP is synthesized as a pro-enzyme where its pro region (Pro) acts as a foldase to stabilize the transition state for the folding reaction. Pro also functions as a potent folding catalyst when supplied as a separate polypeptide chain, accelerating the rate of alphaLP folding by a factor of 3 x 10(9). In the absence of Pro, alphaLP folds only partially to a stable molten globule-like intermediate state. Addition of Pro to this intermediate leads to rapid formation of native alphaLP. Here we report the crystal structures of Pro and of the non-covalent inhibitory complex between Pro and native alphaLP. The C-shaped Pro surrounds the C-terminal beta-barrel domain of the folded protease, forming a large complementary interface. Regions of extensive hydration in the interface explain how Pro binds tightly to the native state, yet even more tightly to the folding transition state. Based on structural and functional data we propose that a specific structural element in alphaLP is largely responsible for the folding barrier and suggest how Pro can overcome this barrier.
虽然大多数蛋白质能迅速自发折叠成天然状态,但细胞外细菌蛋白酶α-裂解蛋白酶(αLP)的折叠半衰期约为2000年,对应的折叠能垒为30千卡/摩尔(-1)。αLP以酶原形式合成,其前肽区(Pro)作为一种折叠酶,稳定折叠反应的过渡态。当作为单独的多肽链提供时,Pro还作为一种有效的折叠催化剂,将αLP的折叠速率提高3×10^9倍。在没有Pro的情况下,αLP仅部分折叠成稳定的类熔球中间体状态。向该中间体添加Pro会导致天然αLP的快速形成。在此,我们报道了Pro以及Pro与天然αLP之间非共价抑制复合物的晶体结构。C形的Pro围绕着折叠后蛋白酶的C端β桶结构域,形成一个大的互补界面。界面中广泛的水化区域解释了Pro如何紧密结合天然状态,但更紧密地结合折叠过渡态。基于结构和功能数据,我们提出αLP中的一个特定结构元件在很大程度上导致了折叠能垒,并说明了Pro如何克服这一能垒。