Key Laboratory for Biomechanics and Mechanobiology of Ministry of Education, School of Biological Science and Medical Engineering, Beihang University, 37th Xue-yuan Road, Hian-dian District, Beijing, China.
International Joint Research Center of Aerospace Biotechnology and Medical Engineering, Ministry of Science and Technology of China, School of Biological Science and Medical Engineering, Beihang University, 37th Xue-yuan Road, Hian-dian District, Beijing, China.
Sci Rep. 2017 Jan 23;7:40940. doi: 10.1038/srep40940.
The spectrin is first identified as the main component of erythrocyte membrane skeleton. It is getting growing attention since being found in multiple nonerythroid cells, providing complex mechanical properties and signal interface under the cell membrane. Recent genomics studies have revealed that the spectrin is highly relevant to bone disorders. However, in osteocytes, the important mechanosensors in bone, the role of spectrin is poorly understood. In this research, the role of spectrin in the mechanotransduction of MLO-Y4 osteocytes was studied. Immunofluorescence staining showed that, the spectrins were elaborately organized as a porous network throughout the cytoplasm, and linked with F-actin into a dense layer underlying the cell membrane. AFM results indicate that, the spectrin is pivotal for maintaining the overall elasticity of osteocytes, especially for the cell cortex stiffiness. Disruption of the spectrin network caused obvious softening of osteocytes, and resulted in a significant increase of Ca influx, NO secretion, cell-cell connections and also induced a translocation of eNOS from membrane to cytoplasm. These results indicate that the spectrin network is a global structural support for osteocytes involving in the mechanotransduction process, making it a potential therapeutic target for bone disorders.
血影蛋白最初被鉴定为红细胞膜骨架的主要成分。自从在多种非红细胞细胞中发现血影蛋白以来,它因其在细胞膜下提供复杂的机械性能和信号接口而受到越来越多的关注。最近的基因组学研究表明,血影蛋白与骨骼疾病高度相关。然而,在成骨细胞中,骨骼中的重要机械感受器,血影蛋白的作用还知之甚少。在这项研究中,研究了血影蛋白在 MLO-Y4 成骨细胞的机械转导中的作用。免疫荧光染色显示,血影蛋白在整个细胞质中精心组织成多孔网络,并与 F-肌动蛋白连接成一层致密的细胞膜下层。原子力显微镜结果表明,血影蛋白对于维持成骨细胞的整体弹性至关重要,特别是对于细胞皮层的刚度。破坏血影蛋白网络会导致成骨细胞明显软化,并导致 Ca 流入、NO 分泌、细胞间连接显著增加,同时也诱导 eNOS 从膜向细胞质易位。这些结果表明,血影蛋白网络是成骨细胞参与机械转导过程的整体结构支撑,使其成为骨骼疾病的潜在治疗靶点。