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Crystal structure of Lon protease: molecular architecture of gated entry to a sequestered degradation chamber
Authors:Chang Ro Lee  Hyun Sook Lee  Yeon‐Gil Kim  Sang Jin Kim  Kae Kyoung Kwon  Gian Marco De Donatis  Jung‐Hyun Lee  Michael R Maurizi  Sung Gyun Kang
Institution:1. Marine Biotechnology Research Center, Korea Ocean Research and Development Institute, Ansan, Republic of Korea;2. Beamline Division, Pohang Accelerator Laboratory, Pohang, Kyungbuk, Republic of Korea;3. Department of Marine Biotechnology, University of Science and Technology, Daejeon, Republic of Korea;4. Laboratory of Cell Biology, Center for Cancer Research, National Cancer Institute, Bethesda, MD, USA
Abstract: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.
Keywords:AAA+ protein  ATP‐dependent protease  compartmentalized protease  protein quality control  TonLon
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