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Crystal structure of Lon protease: molecular architecture of gated entry to a sequestered degradation chamber

机译:Lon蛋白酶的晶体结构:门进入隔离的降解室的分子结构

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摘要

Lon proteases are distributed in all kingdoms of life and are required for survival of cells under stress. Lon is a tandem fusion of an AAA+ molecular chaperone and a protease with a serine-lysine catalytic dyad. We report the 2.0-Å resolution crystal structure of Thermococcus onnurineus NA1 Lon (TonLon). The structure is a three-tiered hexagonal cylinder with a large sequestered chamber accessible through an axial channel. Conserved loops extending from the AAA+ domain combine with an insertion domain containing the membrane anchor to form an apical domain that serves as a gate governing substrate access to an internal unfolding and degradation chamber. Alternating AAA+ domains are in tight- and weak-binding nucleotide states with different domain orientations and intersubunit contacts, reflecting intramolecular dynamics during ATP-driven protein unfolding and translocation. The bowl-shaped proteolytic chamber is contiguous with the chaperone chamber allowing internalized proteins direct access to the proteolytic sites without further gating restrictions.
机译:Lon蛋白酶分布于所有生命王国,是细胞在压力下生存所必需的。 Lon是AAA +分子伴侣和蛋白酶与丝氨酸-赖氨酸催化二联体的串联融合体。我们报告了Thermococcus onnurineus NA1 Lon(TonLon)的2.0-Å分辨率晶体结构。该结构是三层六角形圆柱体,具有大的隔离室,可通过轴向通道进入。从AAA +结构域延伸的保守环与包含膜锚的插入结构域结合在一起,形成一个顶部结构域,该结构域用作控制底物进入内部展开和降解腔室的门。交替的AAA +域处于紧密结合和弱结合的核苷酸状态,具有不同的域方向和亚基间接触,反映了ATP驱动的蛋白质展开和易位期间的分子内动力学。碗形蛋白水解室与伴侣室相邻,允许内在化的蛋白质直接进入蛋白水解位点,而无进一步的门控限制。

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