Shen Yusheng, Ori-McKenney Kassandra M
Department of Molecular and Cellular Biology, University of California, Davis, Davis, CA 95616, USA.
bioRxiv. 2023 Jun 14:2023.06.14.544846. doi: 10.1101/2023.06.14.544846.
Cells remodel their cytoskeletal networks to adapt to their environment. Here, we analyze the mechanisms utilized by the cell to tailor its microtubule landscape in response to changes in osmolarity that alter macromolecular crowding. By integrating live cell imaging, enzymatic assays, and reconstitution, we probe the impact of acute perturbations in cytoplasmic density on microtubule-associated proteins (MAPs) and tubulin posttranslational modifications (PTMs), unraveling the molecular underpinnings of cellular adaptation via the microtubule cytoskeleton. We find that cells respond to fluctuations in cytoplasmic density by modulating microtubule acetylation, detyrosination, or MAP7 association, without differentially affecting polyglutamylation, tyrosination, or MAP4 association. These MAP-PTM combinations alter intracellular cargo transport, enabling the cell to respond to osmotic challenges. We further dissect the molecular mechanisms governing tubulin PTM specification, and find that MAP7 promotes acetylation by biasing the conformation of the microtubule lattice, and directly inhibits detyrosination. Acetylation and detyrosination can therefore be decoupled and utilized for distinct cellular purposes. Our data reveal that the MAP code dictates the tubulin code, resulting in remodeling of the microtubule cytoskeleton and alteration of intracellular transport as an integrated mechanism of cellular adaptation.
细胞重塑其细胞骨架网络以适应环境。在此,我们分析细胞利用的机制,以根据改变大分子拥挤程度的渗透压变化来调整其微管格局。通过整合活细胞成像、酶促测定和重组技术,我们探究细胞质密度的急性扰动对微管相关蛋白(MAPs)和微管蛋白翻译后修饰(PTMs)的影响,揭示细胞通过微管细胞骨架进行适应性调节的分子基础。我们发现,细胞通过调节微管乙酰化、去酪氨酸化或MAP7结合来响应细胞质密度的波动,而对多聚谷氨酰胺化、酪氨酸化或MAP4结合没有差异影响。这些MAP - PTM组合改变细胞内货物运输,使细胞能够应对渗透挑战。我们进一步剖析了控制微管蛋白PTM特异性的分子机制,发现MAP7通过使微管晶格构象偏向而促进乙酰化,并直接抑制去酪氨酸化。因此,乙酰化和去酪氨酸化可以解耦并用于不同的细胞目的。我们的数据表明,MAP编码决定微管蛋白编码,导致微管细胞骨架重塑和细胞内运输改变,作为细胞适应性调节的一种综合机制。