Department of Biochemistry, Molecular Biology and Biotechnology, Faculty of Chemistry, Wrocław University of Science and Technology, Wybrzeże Wyspiańskiego 27, 50-370 Wrocław, Poland.
Int J Mol Sci. 2021 Aug 23;22(16):9085. doi: 10.3390/ijms22169085.
Otolin-1 is a scaffold protein of otoliths and otoconia, calcium carbonate biominerals from the inner ear. It contains a gC1q domain responsible for trimerization and binding of Ca. Knowledge of a structure-function relationship of gC1q domain of otolin-1 is crucial for understanding the biology of balance sensing. Here, we show how natural variants alter the structure of gC1q otolin-1 and how Ca are able to revert some effects of the mutations. We discovered that natural substitutions: R339S, R342W and R402P negatively affect the stability of apo-gC1q otolin-1, and that Q426R has a stabilizing effect. In the presence of Ca, R342W and Q426R were stabilized at higher Ca concentrations than the wild-type form, and R402P was completely insensitive to Ca. The mutations affected the self-association of gC1q otolin-1 by inducing detrimental aggregation (R342W) or disabling the trimerization (R402P) of the protein. Our results indicate that the natural variants of gC1q otolin-1 may have a potential to cause pathological changes in otoconia and otoconial membrane, which could affect sensing of balance and increase the probability of occurrence of benign paroxysmal positional vertigo (BPPV).
耳石蛋白-1 是耳石和耳砂的支架蛋白,是内耳的碳酸钙生物矿化物质。它包含一个 gC1q 结构域,负责三聚体形成和 Ca 结合。了解耳石蛋白-1 的 gC1q 结构域的功能关系对于理解平衡感的生物学至关重要。在这里,我们展示了天然变异如何改变 gC1q 耳石蛋白-1 的结构,以及 Ca 如何能够逆转突变的一些影响。我们发现,天然取代:R339S、R342W 和 R402P 会降低脱辅基 gC1q 耳石蛋白-1 的稳定性,而 Q426R 具有稳定作用。在 Ca 存在的情况下,R342W 和 Q426R 在较高的 Ca 浓度下比野生型形式更稳定,而 R402P 对 Ca 完全不敏感。这些突变通过诱导有害聚集(R342W)或使蛋白质的三聚化(R402P)失活,从而影响 gC1q 耳石蛋白-1 的自组装。我们的结果表明,gC1q 耳石蛋白-1 的天然变异可能有潜力引起耳石和耳石膜的病理性变化,从而影响平衡感的感知,并增加良性阵发性位置性眩晕(BPPV)的发生概率。