Department of Biochemistry, Cell and Systems Biology, ISMIB, University of Liverpool, Liverpool L69 3BX, UK.
Proteomics of Cellular Signalling, Department of Infection and Immunity, Luxembourg Institute of Health, L-1445 Strassen, Luxembourg.
J Cell Sci. 2024 Jan 15;137(2). doi: 10.1242/jcs.261522. Epub 2024 Jan 31.
The microtubule network is formed from polymerised tubulin subunits and associating proteins, which govern microtubule dynamics and a diverse array of functions. To identify novel microtubule-binding proteins, we have developed an unbiased biochemical assay, which relies on the selective extraction of cytosolic proteins from U2OS cells, while leaving behind the microtubule network. Candidate proteins are linked to microtubules by their sensitivities to the depolymerising drug nocodazole or the microtubule-stabilising drug taxol, which is quantitated by mass spectrometry. Our approach is benchmarked by co-segregation of tubulin and previously established microtubule-binding proteins. We then identify several novel candidate microtubule-binding proteins, from which we have selected the ubiquitin E3 ligase tripartite motif-containing protein 3 (TRIM3) for further characterisation. We map TRIM3 microtubule binding to its C-terminal NHL-repeat region. We show that TRIM3 is required for the accumulation of acetylated tubulin, following treatment with taxol. Furthermore, loss of TRIM3 partially recapitulates the reduction in nocodazole-resistant microtubules characteristic of α-tubulin acetyltransferase 1 (ATAT1) depletion. These results can be explained by a decrease in ATAT1 following depletion of TRIM3 that is independent of transcription.
微管网络由聚合的微管蛋白亚基和相关蛋白组成,这些蛋白控制微管动力学和各种功能。为了鉴定新的微管结合蛋白,我们开发了一种无偏的生化测定方法,该方法依赖于从 U2OS 细胞中选择性提取细胞质蛋白,同时留下微管网络。候选蛋白通过其对微管解聚药物诺考达唑或微管稳定药物紫杉醇的敏感性与微管相连,通过质谱定量。我们的方法通过与微管结合的 tubulin 和以前建立的微管结合蛋白的共分离来进行基准测试。然后,我们从其中鉴定出几种新的候选微管结合蛋白,并选择泛素 E3 连接酶三联基序蛋白 3(TRIM3)进行进一步表征。我们将 TRIM3 的微管结合映射到其 C 末端 NHL 重复区。我们表明,在用紫杉醇处理后,TRIM3 对于乙酰化微管的积累是必需的。此外,TRIM3 的缺失部分再现了 α-微管蛋白乙酰转移酶 1(ATAT1)缺失特征的诺考达唑抗性微管的减少。这些结果可以通过 TRIM3 耗竭后 ATAT1 的减少来解释,这种减少与转录无关。