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Distinct contributions of microtubule subtypes to cell membrane shape and stability

机译:微管亚型对细胞膜形状和稳定性的不同贡献

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摘要

Microtubules -(MTs) are linked to cell mechanobiology."Stable" and "dynamically unstable"microtubule (MT) subtypes are differentially sensitive to growth and distribution in serum starved (SS) versus full serum (FS) conditions.Atomic Force and Immunofluorescence microscopies were used to study the nanomechanical properties of the cell membrane in response to serum conditions and nocodazole.Nanomechanical properties of the cell membrane remain unchanged under SS/FS conditions even though there are drastic MT changes.The cell membrane is shown to depend on unstable MTs and the intermediate filament (IF) networks to maintain local stiffness.Measurements of local membrane nanomechanics in response to nocodazole display characteristic serum dependent decays.The responses suggest that the cell exists in a mechanical transition state.Stiffness is shown to depend on the interplay between dynamically unstable MTs,stable MTs and IFs which all act to impart a distinct cellular type of transient "metastability".
机译:微管-(MTs)与细胞力学生物学有关。“稳定”和“动态不稳定”的微管(MT)亚型对血清饥饿(SS)和全血清(FS)条件下的生长和分布具有不同的敏感性。原子力和免疫荧光显微镜检查用来研究细胞膜对血清条件和诺考达唑的响应的纳米力学性能。即使MT发生剧烈变化,在SS / FS条件下细胞膜的纳米力学性能仍保持不变。中间膜(IF)网络可保持局部刚度。对诺考达唑反应的局部膜纳米力学测量显示出特征性的血清依赖性衰变。响应表明细胞以机械过渡状态存在。刚度取决于两者之间的相互作用动态不稳定的MT,稳定的MT和IF,它们都可以赋予瞬态“亚稳”。

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