Institute of Mechanobiology & Medical Engineering, School of Life Sciences and Biotechnology, Shanghai Jiao Tong University, Shanghai, China.
Ann Biomed Eng. 2010 Mar;38(3):729-37. doi: 10.1007/s10439-009-9896-6.
Endothelial cells (ECs) line the innermost of the blood vessel wall and are constantly subjected to shear stress imposed by blood flow. ECs were also influenced by the neighboring vascular smooth muscle cells (VSMCs). The bidirectional communication between ECs and VSMCs modulates vascular homeostasis. In this study, the involvement of histone deacetylase 6 (HDAC6) in modulating migration of ECs co-cultured with VSMCs by the normal level of laminar shear stress (NSS) was investigated. ECs was either cultured alone or co-cultured with VSMCs under static conditions or subjected to NSS of 15 dyne/cm2 by using a parallel-plate co-culture flow chamber system. It was demonstrated that both NSS and VSMCs could increase EC migration. The migration level of ECs co-cultured with VSMCs under NSS was not higher than that under the static condition. The process of EC migration regulated by VSMCs and NSS was associated with the increased expression of HDAC6 and low level of acetylated tubulin. The increase in HDAC6 expression was accompanied by a time-dependent decrease in the acetylation of tubulin in ECs co-cultured with VSMCs. Inhibition of the HDAC6 by siRNA or tributyrin, an inhibitor of HDACs, induced a parallel alteration in the migration and the acetylated tubulin of ECs co-cultured with VSMCs. It was observed by immunofluorescence staining that the acetylated tubulin was distributed mostly around the cell nucleus in ECs co-cultured with VSMCs. The results suggest that the NSS may display a protective function on the vascular homeostasis by modulating EC migration to a normal level in a VSMC-dependent manner. This modulation process involves the down-regulation of acetylated tubulin which results from increased HDAC6 activity in ECs.
内皮细胞 (ECs) 排列在血管壁的最内层,不断受到血流产生的切变应力的影响。ECs 还受到相邻血管平滑肌细胞 (VSMCs) 的影响。ECs 和 VSMCs 之间的双向通讯调节血管稳态。在这项研究中,研究了组蛋白去乙酰化酶 6 (HDAC6) 如何参与调节在正常层流剪切应力 (NSS) 下与 VSMCs 共培养的 EC 迁移。EC 单独培养或在静态条件下与 VSMCs 共培养,或使用平行平板共培养流动腔系统在 15 达因/平方厘米的 NSS 下培养。结果表明,NSS 和 VSMCs 都可以增加 EC 迁移。在 NSS 下与 VSMCs 共培养的 EC 的迁移水平并不高于静态条件下的迁移水平。由 VSMCs 和 NSS 调节的 EC 迁移过程与 HDAC6 表达增加和微管乙酰化水平降低有关。与 VSMCs 共培养的 EC 中 HDAC6 表达的增加伴随着微管乙酰化的时间依赖性降低。通过 siRNA 或丁酸钠(HDAC 的抑制剂)抑制 HDAC6 会导致与 VSMCs 共培养的 EC 的迁移和乙酰化微管平行改变。通过免疫荧光染色观察到,与 VSMCs 共培养的 EC 中,乙酰化微管主要分布在细胞核周围。结果表明,NSS 可能通过以 VSMC 依赖的方式将 EC 迁移调节至正常水平来显示对血管稳态的保护作用。这种调节过程涉及到乙酰化微管的下调,这是由于 EC 中 HDAC6 活性增加所致。