Istituto Veneto di Medicina Molecolare, Fondazione per la Ricerca Biomedica Avanzata, 35129 Padua, Italy.
Proc Natl Acad Sci U S A. 2012 Aug 28;109(35):14013-8. doi: 10.1073/pnas.1211869109. Epub 2012 Aug 13.
Phosphatidylinositol phosphate kinase type 1γ (PIPKIγ) is a key enzyme in the generation of phosphatidylinositol 4,5-bisphosphate [PI(4,5)P(2)] and is expressed at high levels in the nervous system. Homozygous knockout mice lacking this enzyme die postnatally within 24 h, whereas PIPKIγ(+/-) siblings breed normally and have no reported phenotype. Here we show that adult PIPKIγ(+/-) mice have dramatically elevated hearing thresholds for high-frequency sounds. During the first postnatal week we observed a reduction of ATP-dependent Ca(2+) signaling activity in cochlear nonsensory cells. Because Ca(2+) signaling under these conditions depends on inositol-1,4,5-trisphosphate generation from phospholipase C (PLC)-dependent hydrolysis of PI(4,5)P(2), we conclude that (i) PIPKIγ is primarily responsible for the synthesis of the receptor-regulated PLC-sensitive PI(4,5)P(2) pool in the cell syncytia that supports auditory hair cells; (ii) spatially graded impairment of this signaling pathway in cochlear nonsensory cells causes a selective alteration in the acquisition of hearing in PIPKIγ(+/-) mice. This mouse model also suggests that PIPKIγ may determine the level of gap junction contribution to cochlear development.
磷脂酰肌醇磷酸激酶 1γ(PIPKIγ)是生成磷脂酰肌醇 4,5-二磷酸[PI(4,5)P(2)]的关键酶,在神经系统中表达水平较高。这种酶的纯合敲除小鼠在出生后 24 小时内死亡,而 PIPKIγ(+/-)同窝仔鼠正常繁殖,没有报道的表型。在这里,我们发现成年 PIPKIγ(+/-)小鼠的高频声音听力阈值显著升高。在出生后的第一周,我们观察到耳蜗非感觉细胞中 ATP 依赖性 Ca(2+)信号活性降低。由于在这些条件下的 Ca(2+)信号取决于磷脂酶 C(PLC)依赖性水解 PI(4,5)P(2)产生的肌醇 1,4,5-三磷酸,我们得出结论:(i)PIPKIγ主要负责支持听觉毛细胞的细胞合胞体中受体调节的 PLC 敏感 PI(4,5)P(2)池的合成;(ii)耳蜗非感觉细胞中这种信号通路的空间梯度损伤导致 PIPKIγ(+/-)小鼠听力获得的选择性改变。该小鼠模型还表明,PIPKIγ可能决定缝隙连接对耳蜗发育的贡献水平。