Extending fluorescence anisotropy to large complexes using reversibly switchable proteins

被引:0
|
作者
Andrea Volpato
Dirk Ollech
Jonatan Alvelid
Martina Damenti
Barbara Müller
Andrew G York
Maria Ingaramo
Ilaria Testa
机构
[1] KTH Royal Institute of Technology,Department of Applied Physics and Science for Life Laboratory
[2] University Hospital Heidelberg,Department of Infectious Diseases, Virology, Centre for Integrative Infectious Disease Research
[3] Calico Life Sciences LLC,undefined
来源
Nature Biotechnology | 2023年 / 41卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
The formation of macromolecular complexes can be measured by detection of changes in rotational mobility using time-resolved fluorescence anisotropy. However, this method is limited to relatively small molecules (~0.1–30 kDa), excluding the majority of the human proteome and its complexes. We describe selective time-resolved anisotropy with reversibly switchable states (STARSS), which overcomes this limitation and extends the observable mass range by more than three orders of magnitude. STARSS is based on long-lived reversible molecular transitions of switchable fluorescent proteins to resolve the relatively slow rotational diffusivity of large complexes. We used STARSS to probe the rotational mobility of several molecular complexes in cells, including chromatin, the retroviral Gag lattice and activity-regulated cytoskeleton-associated protein oligomers. Because STARSS can probe arbitrarily large structures, it is generally applicable to the entire human proteome.
引用
收藏
页码:552 / 559
页数:7
相关论文
共 50 条
  • [1] Extending fluorescence anisotropy to large complexes using reversibly switchable proteins
    Volpato, Andrea
    Ollech, Dirk
    Alvelid, Jonatan
    Damenti, Martina
    Mueller, Barbara
    York, Andrew G.
    Ingaramo, Maria
    Testa, Ilaria
    NATURE BIOTECHNOLOGY, 2023, 41 (04) : 552 - +
  • [2] Reversibly Switchable Fluorescent Proteins
    Stiel, Andre C.
    Andresen, Martin
    Brakemann, Tanja
    Grotjohann, Tim
    Hell, Stefan W.
    Jakobs, Stefan
    BIOPHYSICAL JOURNAL, 2010, 98 (03) : 393A - 393A
  • [3] A new class of reversibly switchable fluorescent proteins
    Andresen, M.
    Brakemann, T.
    Stiel, A. C.
    Testa, I.
    Eggeling, C.
    Hell, S.
    Jakobs, S.
    EUROPEAN BIOPHYSICS JOURNAL WITH BIOPHYSICS LETTERS, 2011, 40 : 122 - 122
  • [4] Reversibly Switchable Fluorescent Proteins for RESOLFT Nanoscopy
    Jensen, Nickels A.
    Jansen, Isabelle
    Kamper, Maria
    Jakobs, Stefan
    NANOSCALE PHOTONIC IMAGING, 2020, 134 : 241 - 261
  • [5] Generation of monomeric reversibly switchable red fluorescent proteins for far-field fluorescence nanoscopy
    Stiel, Andre C.
    Andresen, Martin
    Bock, Hannes
    Hilbert, Michael
    Schilde, Jessica
    Schoenle, Andreas
    Eggeling, Christian
    Egner, Alexander
    Hell, Stefan W.
    Jakobs, Stefan
    BIOPHYSICAL JOURNAL, 2008, 95 (06) : 2989 - 2997
  • [6] Characterization of Reversibly Switchable Fluorescent Proteins in Optoacoustic Imaging
    Vetschera, Paul
    Mishra, Kanu
    Fuenzalida-Werner, Juan Pablo
    Chmyrov, Andriy
    Ntziachristos, Vasilis
    Stiel, Andre C.
    ANALYTICAL CHEMISTRY, 2018, 90 (17) : 10527 - 10535
  • [7] Reversibly switchable fluorescent proteins: "the fair switch project"
    Nifosi, Riccardo
    Storti, Barbara
    Bizzarri, Ranieri
    RIVISTA DEL NUOVO CIMENTO, 2024, 47 (02): : 91 - 178
  • [8] Reversibly switchable fluorescence microscopy with enhanced resolution and image contrast
    Yao, Junjie
    Shcherbakova, Daria M.
    Li, Chiye
    Krumholz, Arie
    Lorca, Ramon A.
    Reinl, Erin
    England, Sarah K.
    Verkhusha, Vladislav V.
    Wang, Lihong V.
    JOURNAL OF BIOMEDICAL OPTICS, 2014, 19 (08)
  • [9] Systematic Excited State Studies of Reversibly Switchable Fluorescent Proteins
    Smyrnova, Daryna
    Marin, Maria del Carmen
    Olivucci, Massimo
    Ceulemans, Arnout
    JOURNAL OF CHEMICAL THEORY AND COMPUTATION, 2018, 14 (06) : 3163 - 3172
  • [10] Computer Modeling of Structures of Reversibly Switchable Fluorescent Proteins with LOV Domains
    Yu. I. Meteleshko
    M. G. Khrenova
    A. V. Nemukhin
    Crystallography Reports, 2021, 66 : 815 - 818