Involvement of RBP-J interacting and tubulin-associated protein in the distribution of protein regulator of cytokinesis 1 in mitotic spindles.

IF 4.6 2区 生物学 Q2 CELL BIOLOGY
Frontiers in Cell and Developmental Biology Pub Date : 2025-01-07 eCollection Date: 2024-01-01 DOI:10.3389/fcell.2024.1472340
Julia Caspers, Andreas Ritter, Badi Bahrami, Samira Catharina Hoock, Susanne Roth, Alexandra Friemel, Franz Oswald, Frank Louwen, Nina-Naomi Kreis, Juping Yuan
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Abstract

The protein regulator of cytokinesis 1 (PRC1) is a key regulator of microtubule crosslinking and bundling, which is crucial for spindle formation and cytokinesis. RITA, the RBP-J interacting and tubulin-associated protein, is a microtubule associated protein. We have reported that RITA localizes to mitotic spindles modulating microtubule dynamics and stability as well as to spindle poles affecting the activity of Aurora A. As defective chromosome congression and segregation are the most remarkable features of cells depleted of RITA, we aimed to explore further potential related mechanisms, using various cellular and molecular techniques, including clustered regularly interspaced short palindromic repeats technique/deactivated CRISPR-associated protein 9 (CRISPR/dCas9), mass spectrometry, confocal microscopy, immunofluorescence, immunoprecipitation and Western blot analysis. Here, we show that FLAG-RITA precipitates PRC1 and tubulin, and that these two proteins co-localize in the central region of the central spindle. Reduction of RITA enlarges the staining area of PRC1 in mitotic spindles as well as in the central spindle. Its suppression reduces the inter-centromere distance in metaphase cells. Interestingly, microtubule bundles of the central spindle are often less organized in a non-parallel pattern, as evidenced by increased angles, relative to corresponding separating chromosomes. These data suggest a novel role for RITA in mitotic distribution of PRC1 and that its deregulation may contribute to defective chromosome movement during mitosis. As both RITA and PRC1 are closely associated with malignant progression, further work is required to elucidate the detailed molecular mechanisms by which RITA acts as a modulator in central spindle formation and cytokinesis.

RBP-J相互作用和微管蛋白相关蛋白参与有丝分裂纺锤体细胞分裂1蛋白调节因子的分布。
胞质分裂1蛋白调节因子(PRC1)是微管交联和捆绑的关键调节因子,对纺锤体形成和胞质分裂至关重要。RBP-J相互作用和微管蛋白相关蛋白RITA是一种微管相关蛋白。我们已经报道了RITA定位于调节微管动力学和稳定性的有丝分裂纺锤体,以及影响Aurora a活性的纺锤极。由于染色体聚集和分离缺陷是RITA缺失细胞最显著的特征,我们旨在利用各种细胞和分子技术进一步探索潜在的相关机制。包括聚类规则间隔短回文重复序列技术/失活CRISPR相关蛋白9 (CRISPR/dCas9),质谱,共聚焦显微镜,免疫荧光,免疫沉淀和Western blot分析。在这里,我们发现FLAG-RITA沉淀PRC1和微管蛋白,这两种蛋白在中央纺锤体的中心区域共定位。RITA的减少扩大了PRC1在有丝分裂纺锤体和中央纺锤体中的染色面积。它的抑制减少了中期细胞中着丝粒间的距离。有趣的是,相对于相应的分离染色体,中央纺锤体的微管束通常较少以非平行模式组织,如角度增加所证明的那样。这些数据表明,RITA在PRC1的有丝分裂分布中发挥了新的作用,并且其失调可能导致有丝分裂期间染色体运动缺陷。由于RITA和PRC1都与恶性进展密切相关,因此需要进一步的工作来阐明RITA在中央纺锤体形成和细胞分裂中作为调节剂的详细分子机制。
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来源期刊
Frontiers in Cell and Developmental Biology
Frontiers in Cell and Developmental Biology Biochemistry, Genetics and Molecular Biology-Cell Biology
CiteScore
9.70
自引率
3.60%
发文量
2531
审稿时长
12 weeks
期刊介绍: Frontiers in Cell and Developmental Biology is a broad-scope, interdisciplinary open-access journal, focusing on the fundamental processes of life, led by Prof Amanda Fisher and supported by a geographically diverse, high-quality editorial board. The journal welcomes submissions on a wide spectrum of cell and developmental biology, covering intracellular and extracellular dynamics, with sections focusing on signaling, adhesion, migration, cell death and survival and membrane trafficking. Additionally, the journal offers sections dedicated to the cutting edge of fundamental and translational research in molecular medicine and stem cell biology. With a collaborative, rigorous and transparent peer-review, the journal produces the highest scientific quality in both fundamental and applied research, and advanced article level metrics measure the real-time impact and influence of each publication.
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