Literature DB >> 20923671

Improved probes for hybrid voltage sensor imaging.

Dongsheng Wang1, Zhen Zhang, Baron Chanda, Meyer B Jackson.   

Abstract

Hybrid voltage sensors (hVoS) probe membrane potential by coupling the fluorescence of membrane-anchored proteins to the movement of a membrane-embedded hydrophobic anion dipicrylamine. Fluorescence resonance energy transfer between these two components transduces voltage changes into fluorescence changes, providing a signal for imaging electrical activity in genetically targeted cells. To improve hVoS signals, we systematically varied the optical properties, membrane targeting motifs, and linkages of fluorescent proteins to optimize the normalized fluorescence change (ΔF/F) and signal/noise ratio. The best results were obtained with cerulean fluorescent protein tagged N-terminally with a GAP43 motif and C-terminally with a truncated h-ras motif. With 100 mV steps in PC12 cells, this probe produced ΔF/F = 26% (4 μM dipicrylamine), which was threefold greater than that obtained with the original farnesylated EGFP construct. We also obtained a fivefold greater signal/noise ratio, which was 70% of a theoretical optimum. We designate this GAP43-CerFP-t-h-ras construct as hVoS 2.0. With the aid of a theoretical analysis, we estimated that hVoS 2.0 places its fluorophore ∼40 Å from the bilayer midplane. hVoS 2.0 performed well in cultured hippocampal neurons, where single action potentials produced clear fluorescence changes in a single trial. This improved probe should help investigators image voltage in genetically targeted neurons.
Copyright © 2010 Biophysical Society. Published by Elsevier Inc. All rights reserved.

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Year:  2010        PMID: 20923671      PMCID: PMC3042572          DOI: 10.1016/j.bpj.2010.07.037

Source DB:  PubMed          Journal:  Biophys J        ISSN: 0006-3495            Impact factor:   4.033


  34 in total

1.  Direct measurement of specific membrane capacitance in neurons.

Authors:  L J Gentet; G J Stuart; J D Clements
Journal:  Biophys J       Date:  2000-07       Impact factor: 4.033

2.  A genetically targetable fluorescent probe of channel gating with rapid kinetics.

Authors:  Kazuto Ataka; Vincent A Pieribone
Journal:  Biophys J       Date:  2002-01       Impact factor: 4.033

3.  Voltage-sensitive dye imaging of population neuronal activity in cortical tissue.

Authors:  Wenjun Jin; Ren-Ji Zhang; Jian-young Wu
Journal:  J Neurosci Methods       Date:  2002-03-30       Impact factor: 2.390

4.  Developmental down-regulation of GAP-43 expression and timing of target contact in rat corticospinal neurons.

Authors:  Soheila Karimi-Abdolrezaee; Valerie M K Verge; David J Schreyer
Journal:  Exp Neurol       Date:  2002-08       Impact factor: 5.330

5.  A hybrid approach to measuring electrical activity in genetically specified neurons.

Authors:  Baron Chanda; Rikard Blunck; Leonardo C Faria; Felix E Schweizer; Istvan Mody; Francisco Bezanilla
Journal:  Nat Neurosci       Date:  2005-10-02       Impact factor: 24.884

6.  Improving membrane voltage measurements using FRET with new fluorescent proteins.

Authors:  Hidekazu Tsutsui; Satoshi Karasawa; Yasushi Okamura; Atsushi Miyawaki
Journal:  Nat Methods       Date:  2008-07-11       Impact factor: 28.547

7.  Microsecond response of a voltage-sensitive merocyanine dye: fast voltage-clamp measurements on squid giant axon.

Authors:  B M Salzberg; A L Obaid; F Bezanilla
Journal:  Jpn J Physiol       Date:  1993

8.  Directed evolution of a monomeric, bright and photostable version of Clavularia cyan fluorescent protein: structural characterization and applications in fluorescence imaging.

Authors:  Hui-wang Ai; J Nathan Henderson; S James Remington; Robert E Campbell
Journal:  Biochem J       Date:  2006-12-15       Impact factor: 3.857

9.  Induced capacitance in the squid giant axon. Lipophilic ion displacement currents.

Authors:  J M Fernández; R E Taylor; F Bezanilla
Journal:  J Gen Physiol       Date:  1983-09       Impact factor: 4.086

10.  Exploration of fluorescent protein voltage probes based on circularly permuted fluorescent proteins.

Authors:  Sunita Ghimire Gautam; Amelie Perron; Hiroki Mutoh; Thomas Knöpfel
Journal:  Front Neuroeng       Date:  2009-10-13
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  32 in total

1.  Optically monitoring voltage in neurons by photo-induced electron transfer through molecular wires.

Authors:  Evan W Miller; John Y Lin; E Paxon Frady; Paul A Steinbach; William B Kristan; Roger Y Tsien
Journal:  Proc Natl Acad Sci U S A       Date:  2012-01-24       Impact factor: 11.205

Review 2.  Frontiers in optical imaging of cerebral blood flow and metabolism.

Authors:  Anna Devor; Sava Sakadžić; Vivek J Srinivasan; Mohammad A Yaseen; Krystal Nizar; Payam A Saisan; Peifang Tian; Anders M Dale; Sergei A Vinogradov; Maria Angela Franceschini; David A Boas
Journal:  J Cereb Blood Flow Metab       Date:  2012-01-18       Impact factor: 6.200

Review 3.  Genetically engineered fluorescent voltage reporters.

Authors:  Hiroki Mutoh; Walther Akemann; Thomas Knöpfel
Journal:  ACS Chem Neurosci       Date:  2012-06-06       Impact factor: 4.418

4.  Spying on Neuronal Membrane Potential with Genetically Targetable Voltage Indicators.

Authors:  Vincent Grenier; Brittany R Daws; Pei Liu; Evan W Miller
Journal:  J Am Chem Soc       Date:  2019-01-10       Impact factor: 15.419

5.  Genetically Encoded Voltage Indicators.

Authors:  Irene Mollinedo-Gajate; Chenchen Song; Thomas Knöpfel
Journal:  Adv Exp Med Biol       Date:  2021       Impact factor: 2.622

6.  Imaging Voltage in Genetically Defined Neuronal Subpopulations with a Cre Recombinase-Targeted Hybrid Voltage Sensor.

Authors:  Peter O Bayguinov; Yihe Ma; Yu Gao; Xinyu Zhao; Meyer B Jackson
Journal:  J Neurosci       Date:  2017-08-23       Impact factor: 6.167

Review 7.  Voltage and Calcium Imaging of Brain Activity.

Authors:  Masoud Sepehri Rad; Yunsook Choi; Lawrence B Cohen; Bradley J Baker; Sheng Zhong; Douglas A Storace; Oliver R Braubach
Journal:  Biophys J       Date:  2017-11-01       Impact factor: 4.033

8.  Hybrid voltage sensor imaging of electrical activity from neurons in hippocampal slices from transgenic mice.

Authors:  Dongsheng Wang; Shane McMahon; Zhen Zhang; Meyer B Jackson
Journal:  J Neurophysiol       Date:  2012-09-19       Impact factor: 2.714

Review 9.  Toward Better Genetically Encoded Sensors of Membrane Potential.

Authors:  Douglas Storace; Masoud Sepehri Rad; BokEum Kang; Lawrence B Cohen; Thom Hughes; Bradley J Baker
Journal:  Trends Neurosci       Date:  2016-05       Impact factor: 13.837

10.  Coarse architecture of the transient receptor potential vanilloid 1 (TRPV1) ion channel determined by fluorescence resonance energy transfer.

Authors:  Víctor De-la-Rosa; Gisela E Rangel-Yescas; Ernesto Ladrón-de-Guevara; Tamara Rosenbaum; León D Islas
Journal:  J Biol Chem       Date:  2013-08-21       Impact factor: 5.157

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