Gating and Regulatory Mechanisms of TMEM16 Ion Channels and Scramblases

dc.contributor.author

Le, Son C

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Liang, Pengfei

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Lowry, Augustus J

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Yang, Huanghe

dc.date.accessioned

2021-12-16T19:46:43Z

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2021-12-16T19:46:43Z

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2021-12-16T19:46:42Z

dc.description.abstract

<jats:p>The transmembrane protein 16 (TMEM16) family consists of Ca<jats:sup>2+</jats:sup>-activated ion channels and Ca<jats:sup>2+</jats:sup>-activated phospholipid scramblases (CaPLSases) that passively flip-flop phospholipids between the two leaflets of the membrane bilayer. Owing to their diverse functions, TMEM16 proteins have been implicated in various human diseases, including asthma, cancer, bleeding disorders, muscular dystrophy, arthritis, epilepsy, dystonia, ataxia, and viral infection. To understand TMEM16 proteins in health and disease, it is critical to decipher their molecular mechanisms of activation gating and regulation. Structural, biophysical, and computational characterizations over the past decade have greatly advanced the molecular understanding of TMEM16 proteins. In this review, we summarize major structural features of the TMEM16 proteins with a focus on regulatory mechanisms and gating.</jats:p>

dc.identifier.issn

1664-042X

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https://hdl.handle.net/10161/24080

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Frontiers Media SA

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Frontiers in Physiology

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10.3389/fphys.2021.787773

dc.title

Gating and Regulatory Mechanisms of TMEM16 Ion Channels and Scramblases

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Journal article

duke.contributor.orcid

Yang, Huanghe|0000-0001-9521-9328

pubs.organisational-group

School of Medicine

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Biochemistry

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Neurobiology

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Duke Institute for Brain Sciences

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Duke

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Basic Science Departments

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University Institutes and Centers

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Institutes and Provost's Academic Units

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Published online

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12

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