Kamitakahara Anna K, Ali Marandi Ghoddousi Ramin, Lanjewar Alexandra L, Magalong Valerie M, Wu Hsiao-Huei, Levitt Pat
Program in Developmental Neuroscience and Neurogenetics, Children's Hospital Los Angeles, The Saban Research Institute, Los Angeles, CA, United States.
Department of Pediatrics, Keck School of Medicine of University of Southern California, Los Angeles, CA, United States.
Front Neurosci. 2021 Nov 4;15:768577. doi: 10.3389/fnins.2021.768577. eCollection 2021.
The intrinsic muscles of the larynx are innervated by the vagal motor nucleus ambiguus (nAmb), which provides direct motor control over vocal production in humans and rodents. Here, we demonstrate in mice using the line, that conditional embryonic deletion of the gene encoding the MET receptor tyrosine kinase (MET) in the developing brainstem (cKO) results in highly penetrant, severe deficits in ultrasonic vocalization in early postnatal life. Major deficits and abnormal vocalization patterns persist into adulthood in more than 70% of mice, with the remaining recovering the ability to vocalize, reflecting heterogeneity in circuit restitution. We show that underlying the functional deficits, conditional deletion of results in a loss of approximately one-third of MET nAmb motor neurons, which begins as early as embryonic day 14.5. The loss of motor neurons is specific to the nAmb, as other brainstem motor and sensory nuclei are unaffected. In the recurrent laryngeal nerve, through which nAmb motor neurons project to innervate the larynx, there is a one-third loss of axons in cKO mice. Together, the data reveal a novel, heterogenous MET-dependence, for which MET differentially affects survival of a subset of nAmb motor neurons necessary for lifespan ultrasonic vocal capacity.
喉的固有肌由迷走神经运动核疑核(nAmb)支配,该核在人类和啮齿动物中对发声提供直接的运动控制。在这里,我们在小鼠中使用 品系证明,发育中的脑干(cKO)中编码MET受体酪氨酸激酶(MET)的基因的条件性胚胎缺失导致出生后早期超声发声出现高度显性的严重缺陷。超过70%的小鼠在成年后仍存在主要缺陷和异常发声模式,其余小鼠恢复了发声能力,这反映了神经回路恢复的异质性。我们表明,在功能缺陷的背后, 的条件性缺失导致约三分之一的MET nAmb运动神经元丧失,这种丧失最早始于胚胎第14.5天。运动神经元的丧失是nAmb特有的,因为其他脑干运动和感觉核未受影响。在喉返神经中,nAmb运动神经元通过该神经投射以支配喉部,cKO小鼠的轴突有三分之一丧失。总之,这些数据揭示了一种新的、异质性的MET依赖性,其中MET对寿命期超声发声能力所必需的一部分nAmb运动神经元的存活有不同影响。