ArticlebioRxiv : the preprint server for biology2026
Divergence of Melanopsin's Intrinsic Properties and Downstream Actions.
Nguyen-Minh Viet, Franklin S Caval-Holme, Elliott S Milner, Andrew S Johnson, Wendy W Liu, Alan J Emanuel, Michael Tri H Do
Abstract readPreprint
In one paragraphArticle in bioRxiv : the preprint server for biology, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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0citing papers in PubMed
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1 · What the graph read from itWhat it found
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2 · The registryThe trial behind it
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0 citing papers in PubMed.
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4 · The recordCorrections and comments
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5 · Who and what moneyAuthors and funding
7 authors.
Nguyen-Minh VietF.M. Kirby Neurobiology Center and Department of Neurology, Boston Children's Hospital and Harvard Medical School; Boston, United States of America.
Franklin S Caval-HolmeF.M. Kirby Neurobiology Center and Department of Neurology, Boston Children's Hospital and Harvard Medical School; Boston, United States of America.
Elliott S MilnerF.M. Kirby Neurobiology Center and Department of Neurology, Boston Children's Hospital and Harvard Medical School; Boston, United States of America.
Andrew S JohnsonF.M. Kirby Neurobiology Center and Department of Neurology, Boston Children's Hospital and Harvard Medical School; Boston, United States of America.
Wendy W LiuF.M. Kirby Neurobiology Center and Department of Neurology, Boston Children's Hospital and Harvard Medical School; Boston, United States of America.
Alan J EmanuelF.M. Kirby Neurobiology Center and Department of Neurology, Boston Children's Hospital and Harvard Medical School; Boston, United States of America.
Michael Tri H DoF.M. Kirby Neurobiology Center and Department of Neurology, Boston Children's Hospital and Harvard Medical School; Boston, United States of America.ORCID 0000-0001-6418-0977 Funding
Viral ModuleP30EY012196 · NEI · HARVARD UNIVERSITY (MEDICAL SCHOOL) · PI ZHIGANG HE · 1998 to 2026
$21.3MTRAINING IN SLEEP, CIRCADIAN &RESPIRATORY NEUROBIOLOGYT32HL007901 · NHLBI · BRIGHAM AND WOMEN'S HOSPITAL · PI Charles A Czeisler · 1998 to 2026
$18.5MMouse Neurodevelopmental Behavior CoreU54HD090255 · NICHD · BOSTON CHILDREN'S HOSPITAL · PI POMEROY, SCOTT LOREN · 2016 to 2020
$5.2MProperties and Mechanisms of Melanopsin PhotoreceptionR01EY023648 · NEI · BOSTON CHILDREN'S HOSPITAL · PI DO, MICHAEL TRI HOANG · 2013 to 2022
$4.5MIntrinsically photosensitive retinal ganglion cells and their central projectionsR01EY025555 · NEI · UNIVERSITY OF ALABAMA AT BIRMINGHAM · PI DO, MICHAEL TRI HOANG, GAMLIN, PAUL DOUGLAS · 2016 to 2020
$3.9MDownstream Actions of Biophysical Mechanisms in the Visual System-Diversity SupplementR01EY034089 · NEI · BOSTON CHILDREN'S HOSPITAL · PI Michael Tri Hoang Do · 2022 to 2026
$3.0MSignal Generation and Processing in the Retinohypothalamic PathwayR01EY036071 · NEI · BOSTON CHILDREN'S HOSPITAL · PI Michael Tri Hoang Do · 2024 to 2026
$2.1MOrigins and Transformations of Signals for Circadian RegulationR21EY032731 · NEI · BOSTON CHILDREN'S HOSPITAL · PI DO, MICHAEL TRI HOANG · 2021 to 2022
$617kTransformations of photic information in melanopsin pathwaysK99EY037374 · NEI · BOSTON CHILDREN'S HOSPITAL · PI Franklin Caval-Holme · 2025 to 2026
$273kSubcellular Origins of Extensive Spatial Integration by Ganglion Cell PhotoreceptorsF32EY033639 · NEI · BOSTON CHILDREN'S HOSPITAL · PI CAVAL-HOLME, FRANKLIN · 2022 to 2024
$213kPhysiological Mechanisms of Intensity Encoding in Ganglion Cell PhotoreceptorsF31EY025466 · NEI · HARVARD MEDICAL SCHOOL · PI MILNER, ELLIOTT SCOTT · 2015 to 2017
$95kNEI NIH HHS F31 EY025466NEI NIH HHS F32 EY033639NEI NIH HHS K99 EY037374NEI NIH HHS P30 EY012196NEI NIH HHS R01 EY023648NEI NIH HHS R01 EY025555NEI NIH HHS R01 EY034089NEI NIH HHS R01 EY036071NEI NIH HHS R21 EY032731NHLBI NIH HHS T32 HL007901NICHD NIH HHS U54 HD090255
6 · The paper itselfAbstract
Opsins are light-activated receptors. A basic question is how the molecular properties of an opsin shape its effects on the organism. In mammals, melanopsin regulates perception, cognition, physiology, and mood. Because these actions are vital, an international standard has been formulated to express light in terms of melanopsin stimulation. Short wavelengths are absorbed best by melanopsin and should drive its effects most strongly. We report that melanopsin's cellular and behavioral effects show little or even opposite wavelength sensitivity in some regimes. This divergence stems from melanopsin's persistent activity, which generates adaptation. Wavelengths absorbed strongly by melanopsin produce high persistent activity and adaptation, giving net desensitization, whereas wavelengths absorbed weakly can produce sensitization instead. We provide a quantitative model that captures these transformations. This work indicates how the downstream actions of a molecule may diverge starkly from its intrinsic properties.
Identifiers
PMID42779720
PMCPMC13596207
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