Chouchkov C, Surchev L
Department of Anatomy, Medical Faculty, Thracian University, Armejska 11, 6003 Stara Zagora, Bulgaria.
Somatosens Mot Res. 2004 Jun;21(2):75-85. doi: 10.1080/08990220410001721248.
The detailed knowledge of the molecular process of mechanotransduction is still an unsolved question. The investigation of the intramembranous structure of the cutaneous mechanoreceptors may play an important role in elucidating this problem. In this relation, Herbst sensory corpuscles in ducks were studied for the first time using the freeze-etching and thin sectioning techniques. Herbst corpuscles have the basic structural components valid for most of the encapsulated mechanoreceptors in mammals: a capsule made of perineural cells, a lamellar complex of modified Schwann cells, surrounding the non-myelinated part of the receptor nerve fiber and its ending. Freeze-etching replicas reveal that the plasmalemmae of the capsule cells, modified Schwann cells and axolemmae of parts of the nerve fiber differ in both density and pattern of distribution of intramembranous particles (IMPs) as well as IMP size. On all the plasmalemmae the IMP density is higher on the P-face (2000-3300 microm(-2)) than the respective E-face (800-1500 microm(-2)). The axolemma of the ending of the receptor nerve fiber expresses higher density of IMPs than its shaft. The mean IMP size for all the plasmalemmae varies between 5.5 and 7.5 nm. Many tight junctions occur between the capsule cells. These results indicate that the non-myelinated axolemma as well as the plasmalemmae of other components of Herbst corpuscles are specialized in terms of content and distribution of IMPs. The IMPs may represent various kinds of mechanosensitive channel proteins or related membrane-bound proteins participating in the process of mechanotransduction.
机械转导分子过程的详细知识仍是一个未解决的问题。对皮肤机械感受器膜内结构的研究可能在阐明这一问题中发挥重要作用。在这方面,首次使用冷冻蚀刻和超薄切片技术对鸭的赫氏小体进行了研究。赫氏小体具有大多数哺乳动物被囊机械感受器所共有的基本结构成分:由神经周细胞构成的被囊、围绕受体神经纤维无髓鞘部分及其末梢的改良施万细胞层状复合体。冷冻蚀刻复制品显示,被囊细胞、改良施万细胞的质膜以及神经纤维部分的轴膜在膜内颗粒(IMPs)的密度和分布模式以及IMP大小方面均存在差异。在所有质膜上,P面(2000 - 3300个/μm²)的IMP密度高于相应的E面(800 - 1500个/μm²)。受体神经纤维末梢的轴膜表达的IMPs密度高于其轴干。所有质膜的平均IMP大小在5.5至7.5纳米之间变化。被囊细胞之间存在许多紧密连接。这些结果表明,赫氏小体其他成分的无髓鞘轴膜以及质膜在IMP的含量和分布方面具有特异性。IMPs可能代表参与机械转导过程的各种机械敏感通道蛋白或相关膜结合蛋白。