Kobayashi Daisuke, Asano-Hoshino Anshin, Nakakura Takashi, Nishimaki Toshiyuki, Ansai Satoshi, Kinoshita Masato, Ogawa Motoyuki, Hagiwara Haruo, Yokoyama Takahiko
Department of Anatomy and Developmental Biology, Graduate School of Medical Science, Kyoto Prefectural University of Medicine, Kyoto, Japan.
Department of Anatomy and Cell Biology, Teikyo University School of Medicine, Tokyo, Japan.
Dev Biol. 2017 Oct 1;430(1):69-79. doi: 10.1016/j.ydbio.2017.08.016. Epub 2017 Aug 16.
Cilia and flagella are hair-like organelles that project from the cell surface and play important roles in motility and sensory perception. Motility defects in cilia and flagella lead to primary ciliary dyskinesia (PCD), a rare human disease. Recently zinc finger MYND-type containing 10 (ZMYND10) was identified in humans as a PCD-associated gene. In this study, we use medaka fish as a model to characterize the precise functions of zmynd10. In medaka, zmynd10 is exclusively expressed in cells with motile cilia. Embryos with zmynd10 Morpholino knockdown exhibited a left-right (LR) defect associated with loss of motility in Kupffer's vesicle (KV) cilia. This immotility was caused by loss of the outer dynein arms, which is a characteristic ultrastructural phenotype in PCD. In addition, KV cilia in zmynd10 knockdown embryos had a swollen and wavy morphology. Together, these results suggest that zmynd10 is a multi-functional protein that has independent roles in axonemal localization of dynein arms and in formation and/or maintenance of cilia. The C-terminal region of zmynd10 has a MYND-type zinc finger domain (zf-MYND) that is important for its function. Our rescue experiment showed that the zmynd10-ΔC truncated protein, which lacks zf-MYND, was still partially functional, suggesting that zmynd10 has another functional domain besides zf-MYND. To analyze the later stages of development, we generated a zmynd10 knockout mutant using transcription activator-like effector nuclease (TALEN) technology. Adult mutants exhibited sperm dysmotility, scoliosis and progressive polycystic kidney.
纤毛和鞭毛是从细胞表面伸出的毛发状细胞器,在运动和感官感知中发挥重要作用。纤毛和鞭毛的运动缺陷会导致原发性纤毛运动障碍(PCD),这是一种罕见的人类疾病。最近,含锌指MYND型10(ZMYND10)在人类中被鉴定为与PCD相关的基因。在本研究中,我们以青鳉鱼为模型来表征zmynd10的精确功能。在青鳉中,zmynd10仅在具有运动性纤毛的细胞中表达。用zmynd10吗啉代敲低的胚胎表现出左右(LR)缺陷,这与库普弗小泡(KV)纤毛的运动丧失有关。这种运动丧失是由外动力臂的丧失引起的,这是PCD中的一种特征性超微结构表型。此外,zmynd10敲低胚胎中的KV纤毛具有肿胀和波浪状的形态。总之,这些结果表明zmynd10是一种多功能蛋白,在动力臂的轴丝定位以及纤毛的形成和/或维持中具有独立作用。zmynd10的C末端区域具有一个MYND型锌指结构域(zf-MYND),这对其功能很重要。我们的拯救实验表明,缺乏zf-MYND的zmynd10-ΔC截短蛋白仍具有部分功能,这表明zmynd10除zf-MYND外还有另一个功能域。为了分析发育的后期阶段,我们使用转录激活样效应核酸酶(TALEN)技术生成了zmynd10基因敲除突变体。成年突变体表现出精子运动障碍、脊柱侧凸和进行性多囊肾。