Direct Observation of the Mechanical Role of Bacterial Chaperones in Protein Folding

被引:6
|
作者
Chaudhuri, Deep [1 ]
Banerjee, Souradeep [1 ]
Chakraborty, Soham [1 ]
Chowdhury, Debojyoti [1 ]
Haldar, Shubhasis [1 ]
机构
[1] Ashoka Univ, Dept Biol Sci, Sonepat 131029, Haryana, India
关键词
HEAT-SHOCK PROTEINS; SINGLE-MOLECULE TECHNOLOGIES; SUBSTRATE-BINDING DOMAIN; ESCHERICHIA-COLI; NASCENT CHAIN; PEPTOSTREPTOCOCCUS-MAGNUS; CRYSTAL-STRUCTURE; CATALYTIC CYCLE; TRIGGER FACTOR; WEB SERVER;
D O I
10.1021/acs.biomac.2c00451
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Protein folding under force is an integral source of generating mechanical energy in various cellular processes, ranging from protein translation to degradation. Although chaperones are well known to interact with proteins under mechanical force, how they respond to force and control cellular energetics remains unknown. To address this question, we introduce a real-time magnetic tweezer technology herein to mimic the physiological force environment on client proteins, keeping the chaperones unperturbed. We studied two structurally distinct client proteins--protein L and talin with seven different chaperones-independently and in combination and proposed a novel mechanical activity of chaperones. We found that chaperones behave differently, while these client proteins are under force, than their previously known functions. For instance, tunnel-associated chaperones (DsbA and trigger factor), otherwise working as holdase without force, assist folding under force. This process generates an additional mechanical energy up to similar to 147 zJ to facilitate translation or translocation. However, well-known cytoplasmic foldase chaperones (PDI, thioredoxin, or DnaKJE) do not possess the mechanical folding ability under force. Notably, the transferring chaperones (DnaK, DnaJ, and SecB) act as holdase and slow down the folding process, both in the presence and absence of force, to prevent misfolding of the client proteins. This provides an emerging insight of mechanical roles of chaperones: they can generate or consume energy by shifting the energy landscape of the client proteins toward a folded or an unfolded state, suggesting an evolutionary mechanism to minimize energy consumption in various biological processes.
引用
收藏
页码:2951 / 2967
页数:17
相关论文
共 50 条
  • [41] Molecular guardians for newborn proteins: ribosome-associated chaperones and their role in protein folding
    Wegrzyn, RD
    Deuerling, E
    [J]. CELLULAR AND MOLECULAR LIFE SCIENCES, 2005, 62 (23) : 2727 - 2738
  • [42] Molecular guardians for newborn proteins: ribosome-associated chaperones and their role in protein folding
    R. D. Wegrzyn
    E. Deuerling
    [J]. Cellular and Molecular Life Sciences CMLS, 2005, 62 : 2727 - 2738
  • [43] Direct observation of microscopic reversibility in single-molecule protein folding
    Day, Ryan
    Daggett, Valerie
    [J]. JOURNAL OF MOLECULAR BIOLOGY, 2007, 366 (02) : 677 - 686
  • [44] Direct Observation of Multistate Folding in a Single Beta-Helical Protein
    Dittmore, Andrew
    Mason, Eliza
    Cotter, Peggy A.
    Saleh, Omar A.
    [J]. BIOPHYSICAL JOURNAL, 2012, 102 (03) : 454A - 454A
  • [45] Direct molecular dynamics observation of protein folding transition state ensemble
    Ding, F
    Dokholyan, NV
    Buldyrev, SV
    Stanley, HE
    Shakhnovich, EI
    [J]. BIOPHYSICAL JOURNAL, 2002, 83 (06) : 3525 - 3532
  • [46] Direct observation of the fast and robust folding of a slipknotted protein by optical tweezers
    He, Chengzhi
    Li, Shuai
    Gao, Xiaoqing
    Xiao, Adam
    Hu, Chunguang
    Hu, Xiaodong
    Hu, Xiaotang
    Li, Hongbin
    [J]. NANOSCALE, 2019, 11 (09) : 3945 - 3951
  • [47] Direct observation of chaperone-induced changes in a protein folding pathway
    Bechtluft, Philipp
    van Leeuwen, Ruud G. H.
    Tyreman, Matthew
    Tomkiewicz, Danuta
    Nouwen, Nico
    Tepper, Harald L.
    Driessen, Arnold J. M.
    Tans, Sander J.
    [J]. SCIENCE, 2007, 318 (5855) : 1458 - 1461
  • [48] Direct observation of the three-state folding of a single protein molecule
    Cecconi, C
    Shank, EA
    Bustamante, C
    Marqusee, S
    [J]. SCIENCE, 2005, 309 (5743) : 2057 - 2060
  • [49] Direct Observation of Folding Energy Landscape of RNA Hairpin at Mechanical Loading Rates
    Xu, Huizhong
    Plaut, Benjamin
    Zhu, Xiran
    Chen, Maverick
    Mavinkurve, Udit
    Maiti, Anindita
    Song, Guangtao
    Murari, Krishna
    Mandal, Maumita
    [J]. JOURNAL OF PHYSICAL CHEMISTRY B, 2017, 121 (10): : 2220 - 2229
  • [50] Molecular Chaperones in Cellular Protein Folding: Mechanisms and Pathways
    Hartl, Franz Ulrich
    [J]. FASEB JOURNAL, 2013, 27