Department of Integrative Biology and Physiology, University of Minnesota Medical School, Minneapolis, Minnesota, USA.
Nat Med. 2013 Mar;19(3):305-12. doi: 10.1038/nm.3079. Epub 2013 Feb 10.
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.
EF 手蛋白在细胞信号中普遍存在。Parvalbumin(Parv)是典型的 EF 手蛋白,是许多生物系统中高亲和力 Ca(2+)缓冲剂。鉴于 Ca(2+)信号在健康和疾病中的核心地位,具有新生物学活性的 EF 手模体可能具有广泛的用途。在这里,假定破坏 EF 手功能的 EF 手模体取代,即 Parv(ParvE101Q)第二个阳离子结合环域第 12 位的谷氨酸被谷氨酰胺取代,显著地反转了相对阳离子亲和力:Mg(2+)亲和力增加,而 Ca(2+)亲和力降低,形成了一种新的超延迟 Ca(2+)缓冲剂,具有促进心脏舒张的有利特性。在治疗性测试中,ParvE101Q 的表达完全逆转了天然 Parv 表达所固有的严重心肌内在收缩缺陷,并纠正了体外和体内舒张功能障碍疾病模型中的异常心肌舒张。新型 EF 手模体结构域的策略性设计,以调节细胞内 Ca(2+)信号,可能有益于许多 Ca(2+)处理异常的生物系统,包括患病的心脏。