Lee Daniel J, Benson Thane E, Brown M Christian
Department of Otolaryngology, Eaton-Peabody Laboratory, Massachusetts Eye and Ear Infirmary, Boston, MA 02114, USA.
J Assoc Res Otolaryngol. 2008 Sep;9(3):321-33. doi: 10.1007/s10162-008-0125-z. Epub 2008 Jun 18.
Stapedius motoneurons (SMN) mediate the contraction of the stapedius muscle, which protects the inner ear from injury and reduces the masking effects of background noise. A variety of inputs to SMNs are known to exist, but their terminal ultrastructure has not been investigated. We characterized the synaptic terminals on retrogradely labeled SMNs found just ventromedial to the facial motor nucleus. About 80% of the terminals contained round synaptic vesicles. One type (Sm Rnd) had small, round vesicles filling the terminal with occasional dense core vesicles and formed an asymmetric synapse. Sm Rnd terminals were small with lengths of apposition to the SMN less than 3 microm. Partial reconstructions from serial sections demonstrated that these terminals formed up to three synapses per terminal. Another terminal type (Lg Rnd) had large, round vesicles and asymmetric synapses. Most Lg Rnd terminals were small but some were extensive, e.g., abutting the SMN for up to 10 microm. One of these terminals formed at least seven synapses. Another terminal type (Pleo) had pleomorphic vesicles and symmetric active zones that, in some cases, were invaginated by spines from the SMN. A fourth uncommon terminal type (Het Rnd) had round vesicles of heterogeneous sizes and asymmetric synapses. A fifth rare terminal type (Cist) had large, round vesicles and an accompanying subsurface cistern in the SMN. These were generally the same kinds of terminals found on other motoneurons, but the high proportion of round vesicle synapses indicate that SMNs receive mostly excitatory inputs.
镫骨肌运动神经元(SMN)介导镫骨肌的收缩,该肌肉可保护内耳免受损伤并减少背景噪声的掩蔽效应。已知存在多种输入到SMN的信号,但尚未对其终末超微结构进行研究。我们对在面神经运动核腹内侧发现的逆行标记的SMN上的突触终末进行了表征。约80%的终末含有圆形突触小泡。一种类型(Sm Rnd)具有小的圆形小泡,充满终末,偶尔有致密核心小泡,并形成不对称突触。Sm Rnd终末较小,与SMN的贴附长度小于3微米。连续切片的部分重建显示,这些终末每个终末最多形成三个突触。另一种终末类型(Lg Rnd)具有大的圆形小泡和不对称突触。大多数Lg Rnd终末较小,但有些较大,例如与SMN贴附长达10微米。其中一个终末至少形成七个突触。另一种终末类型(Pleo)具有多形性小泡和对称活性区,在某些情况下,被来自SMN的棘突侵入。第四种不常见的终末类型(Het Rnd)具有大小不一的圆形小泡和不对称突触。第五种罕见的终末类型(Cist)具有大的圆形小泡,并在SMN中有一个伴随的表面下池。这些通常是在其他运动神经元上发现的相同类型的终末,但圆形小泡突触的高比例表明SMN主要接受兴奋性输入。