High-throughput screening and validation of antibodies against synaptic proteins to explore opioid signaling dynamics

Lemos Duarte et al. describe a strategy to produce, validate, and utilize highly-specific recombinant antibodies. As a proof of principle, they demonstrate development and validation of a panel of antibodies against proteins relevant to signaling by opiates. Their antibody-based tool can be useful i...

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Main Authors: Mariana Lemos Duarte, Nikita A. Trimbake, Achla Gupta, Christine Tumanut, Xiaomin Fan, Catherine Woods, Akila Ram, Ivone Gomes, Erin N. Bobeck, Deborah Schechtman, Lakshmi A. Devi
Format: Article
Language:English
Published: Nature Portfolio 2021-02-01
Series:Communications Biology
Online Access:https://doi.org/10.1038/s42003-021-01744-8
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author Mariana Lemos Duarte
Nikita A. Trimbake
Achla Gupta
Christine Tumanut
Xiaomin Fan
Catherine Woods
Akila Ram
Ivone Gomes
Erin N. Bobeck
Deborah Schechtman
Lakshmi A. Devi
author_facet Mariana Lemos Duarte
Nikita A. Trimbake
Achla Gupta
Christine Tumanut
Xiaomin Fan
Catherine Woods
Akila Ram
Ivone Gomes
Erin N. Bobeck
Deborah Schechtman
Lakshmi A. Devi
author_sort Mariana Lemos Duarte
collection DOAJ
description Lemos Duarte et al. describe a strategy to produce, validate, and utilize highly-specific recombinant antibodies. As a proof of principle, they demonstrate development and validation of a panel of antibodies against proteins relevant to signaling by opiates. Their antibody-based tool can be useful in understanding the spatio-temporal dynamics of opioid signaling.
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spelling doaj.art-fa3462494d824628b60f24925ecc50e12022-12-21T19:27:03ZengNature PortfolioCommunications Biology2399-36422021-02-014111310.1038/s42003-021-01744-8High-throughput screening and validation of antibodies against synaptic proteins to explore opioid signaling dynamicsMariana Lemos Duarte0Nikita A. Trimbake1Achla Gupta2Christine Tumanut3Xiaomin Fan4Catherine Woods5Akila Ram6Ivone Gomes7Erin N. Bobeck8Deborah Schechtman9Lakshmi A. Devi10Department of Pharmacological Sciences, Icahn School of Medicine at Mount SinaiDepartment of Pharmacological Sciences, Icahn School of Medicine at Mount SinaiDepartment of Pharmacological Sciences, Icahn School of Medicine at Mount SinaiAvantGen Inc.AvantGen Inc.AvantGen Inc.Department of Biology, Utah State UniversityDepartment of Pharmacological Sciences, Icahn School of Medicine at Mount SinaiDepartment of Biology, Utah State UniversityDepartment of Biochemistry, University of São PauloDepartment of Pharmacological Sciences, Icahn School of Medicine at Mount SinaiLemos Duarte et al. describe a strategy to produce, validate, and utilize highly-specific recombinant antibodies. As a proof of principle, they demonstrate development and validation of a panel of antibodies against proteins relevant to signaling by opiates. Their antibody-based tool can be useful in understanding the spatio-temporal dynamics of opioid signaling.https://doi.org/10.1038/s42003-021-01744-8
spellingShingle Mariana Lemos Duarte
Nikita A. Trimbake
Achla Gupta
Christine Tumanut
Xiaomin Fan
Catherine Woods
Akila Ram
Ivone Gomes
Erin N. Bobeck
Deborah Schechtman
Lakshmi A. Devi
High-throughput screening and validation of antibodies against synaptic proteins to explore opioid signaling dynamics
Communications Biology
title High-throughput screening and validation of antibodies against synaptic proteins to explore opioid signaling dynamics
title_full High-throughput screening and validation of antibodies against synaptic proteins to explore opioid signaling dynamics
title_fullStr High-throughput screening and validation of antibodies against synaptic proteins to explore opioid signaling dynamics
title_full_unstemmed High-throughput screening and validation of antibodies against synaptic proteins to explore opioid signaling dynamics
title_short High-throughput screening and validation of antibodies against synaptic proteins to explore opioid signaling dynamics
title_sort high throughput screening and validation of antibodies against synaptic proteins to explore opioid signaling dynamics
url https://doi.org/10.1038/s42003-021-01744-8
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