Publication: A Partial Calcium-Free Linker Confers Flexibility to Inner-Ear Protocadherin-15
Open/View Files
Date
2017
Published Version
Journal Title
Journal ISSN
Volume Title
Publisher
Elsevier BV
The Harvard community has made this article openly available. Please share how this access benefits you.
Citation
Powers, Robert E., Rachelle Gaudet, and Marcos Sotomayor. 2017. “A Partial Calcium-Free Linker Confers Flexibility to Inner-Ear Protocadherin-15.” Structure 25 (3) (March): 482–495. doi:10.1016/j.str.2017.01.014.
Research Data
Abstract
Tip links of the inner ear are protein filaments essential for hearing and balance. Two atypical cadherins, cadherin-23 and protocadherin-15, interact in a Ca2+-dependent manner to form tip links. The largely unknown structure and mechanics of these proteins are integral to understanding how tip links pull on ion channels to initiate sensory perception. Protocadherin-15 has 11 extracellular cadherin (EC) repeats. Its EC3-4 linker lacks several of the canonical Ca2+-binding residues, and contains an aspartate-to-alanine polymorphism (D414A) under positive selection in East Asian populations. We present structures of protocadherin-15 EC3-5 featuring two Ca2+-binding linker regions: canonical EC4-5 linker binding three Ca2+ ions, and non-canonical EC3-4 linker binding only two Ca2+ ions. Our structures and biochemical assays reveal little difference between the D414 and D414A variants. Simulations predict that the partial Ca2+-free EC3-4 linker exhibits increased flexural flexibility without compromised mechanical strength, providing insight into the dynamics of tip links and other atypical cadherins.
Description
Other Available Sources
Keywords
adherin superfamily, tip link, mechanotransduction, X-ray crystallography, molecular dynamics simulation, hearing, deafness
Terms of Use
This article is made available under the terms and conditions applicable to Other Posted Material (LAA), as set forth at Terms of Service