EF-hand proteins are ubiquitous in cell signaling. Parvalbumin (Parv), the archetypal EF-hand protein, is a high-affinity Ca(2+) buffer in many biological systems. Given the centrality of Ca(2+) signaling in health and disease, EF-hand motifs designed to have new biological activities may have widespread utility. Here, an EF-hand motif substitution that had been presumed to destroy EF-hand function, that of glutamine for glutamate at position 12 of the second cation binding loop domain of Parv (ParvE101Q), markedly inverted relative cation affinities: Mg(2+) affinity increased, whereas Ca(2+) affinity decreased, forming a new ultra-delayed Ca(2+) buffer with favorable properties for promoting cardiac relaxation. In therapeutic testing, expression of ParvE101Q fully reversed the severe myocyte intrinsic contractile defect inherent to expression of native Parv and corrected abnormal myocardial relaxation in diastolic dysfunction disease models in vitro and in vivo. Strategic design of new EF-hand motif domains to modulate intracellular Ca(2+) signaling could benefit many biological systems with abnormal Ca(2+) handling, including the diseased heart.
Noncanonical EF-hand motif strategically delays Ca2+ buffering to enhance cardiac performance.
非典型 EF-手型结构域策略性地延迟 Ca2+ 缓冲,从而增强心脏功能
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作者:Wang Wang, Barnabei Matthew S, Asp Michelle L, Heinis Frazer I, Arden Erik, Davis Jennifer, Braunlin Elizabeth, Li Qi, Davis Jonathan P, Potter James D, Metzger Joseph M
| 期刊: | Nature Medicine | 影响因子: | 50.000 |
| 时间: | 2013 | 起止号: | 2013 Mar;19(3):305-12 |
| doi: | 10.1038/nm.3079 | 研究方向: | 其它 |
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