Ion mobility-mass spectrometry reveals conformational flexibility in the deubiquitinating enzyme USP5
PROTEOMICS
Authors: Scott, Daniel; Layfield, Robert; Oldham, Neil J.
Abstract
Many proteins exhibit conformation flexibility as part of their biological function, whether through the presence of a series of well-defined states or by the existence of intrinsic disorder. Ion mobility spectrometry, in combination with MS (IM-MS), offers a rapid and sensitive means of probing ensembles of protein structures through measurement of gas-phase collisional cross sections. We have applied IM-MS analysis to the multidomain deubiquitinating enzyme ubiquitin specific protease 5 (USP5), which is believed to exhibit significant conformational flexibility. Native ESI-MS measurement of the 94-kDa USP5 revealed two distinct charge-state distributions: [M + 17H](+) to [M + 21H](+) and [M + 24H](+) to [M + 29H](+). The collisional cross sections of these ions revealed clear groupings of 52 +/- 4 nm(2) for the lower charges and 66 +/- 6nm(2) for the higher charges. Molecular dynamics simulation of a compact form of USP5, based on a crystal structure, produced structures of 53-54 nm(2) following 2 ns in the gas phase, while simulation of an extended form (based on small-angle X-ray scattering data) led to structures of 64 nm(2). These data demonstrate that IM-MS is a valuable tool in studying proteins with different discrete conformational states.
Vialinin A is a ubiquitin-specific peptidase inhibitor
BIOORGANIC & MEDICINAL CHEMISTRY LETTERS
Authors: Okada, Kiyoshi; Ye, Yue Qi; Taniguchi, Kayoko; Yoshida, Ayaka; Akiyama, Tomonori; Yoshioka, Yasukiyo; Onose, Jun-ichi; Koshino, Hiroyuki; Takahashi, Shunya; Yajima, Arata; Abe, Naoki; Yajima, Shunsuke
Abstract
Vialinin A, a small compound isolated from the Chinese mushroom Thelephora vialis, exhibits more effective anti-inflammatory activity than the widely used immunosuppressive drug tacrolimus (FK506). Here, we show that ubiquitin-specific peptidase 5/isopeptidase T (USP5/IsoT) is a target molecule of vialinin A, identified by using a beads-probe method. Vialinin A inhibited the peptidase activity of USP5/IsoT and also inhibited the enzymatic activities of USP4 among deubiquitinating enzymes tested. Although USPs are a member of thiol protease family, vialinin A exhibited no inhibitions for other thiol proteases, such as calpain and cathepsin. (C) 2013 Elsevier Ltd. All rights reserved.