ジャーナル: Structure / 年: 2021 タイトル: Split conformation of Chaetomium thermophilum Hsp104 disaggregase. 著者: Yosuke Inoue / Yuya Hanazono / Kentaro Noi / Akihiro Kawamoto / Masato Kimatsuka / Ryuhei Harada / Kazuki Takeda / Ryoichi Kita / Natsuki Iwamasa / Kyoka Shibata / Keiichi Noguchi / Yasuteru ...著者: Yosuke Inoue / Yuya Hanazono / Kentaro Noi / Akihiro Kawamoto / Masato Kimatsuka / Ryuhei Harada / Kazuki Takeda / Ryoichi Kita / Natsuki Iwamasa / Kyoka Shibata / Keiichi Noguchi / Yasuteru Shigeta / Keiichi Namba / Teru Ogura / Kunio Miki / Kyosuke Shinohara / Masafumi Yohda / 要旨: Hsp104 and its bacterial homolog ClpB form hexameric ring structures and mediate protein disaggregation. The disaggregated polypeptide is thought to thread through the central channel of the ring. ...Hsp104 and its bacterial homolog ClpB form hexameric ring structures and mediate protein disaggregation. The disaggregated polypeptide is thought to thread through the central channel of the ring. However, the dynamic behavior of Hsp104 during disaggregation remains unclear. Here, we reported the stochastic conformational dynamics and a split conformation of Hsp104 disaggregase from Chaetomium thermophilum (CtHsp104) in the presence of ADP by X-ray crystallography, cryo-electron microscopy (EM), and high-speed atomic force microscopy (AFM). ADP-bound CtHsp104 assembles into a 6 left-handed spiral filament in the crystal structure at a resolution of 2.7 Å. The unit of the filament is a hexamer of the split spiral structure. In the cryo-EM images, staggered and split hexameric rings were observed. Further, high-speed AFM observations showed that a substrate addition enhanced the conformational change and increased the split structure's frequency. Our data suggest that split conformation is an off-pathway state of CtHsp104 during disaggregation.