HN1 expression contributes to mitotic fidelity through Aurora A‐PLK1‐Eg5 axis

IF 2.4 4区 生物学 Q4 CELL BIOLOGY
Cytoskeleton Pub Date : 2024-09-18 DOI:10.1002/cm.21928
Gülseren Özduman, Faruk Şimşek, Aadil Javed, Kemal Sami Korkmaz
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Abstract

Hematological and neurological expressed 1 (HN1) is homolog of Jupiter protein from Drosophila melanogaster where it functions as a microtubule‐associated protein. However, in mammalian cells, HN1 is associated partially with y‐tubulin in centrosomes, Stathmin for stabilizing microtubules, and Cdh1 for regulating Cyclin B1 for cell cycle regulation. Moreover, HN1 overexpression leads to early mitotic exit as well. Other molecular functions and interactions of HN1 are not clear yet. Here, based on our previous analysis where HN1 was shown to cluster supernumerary centrosomes and maintain mitotic spindle assembly, we further investigated the role of HN1 in centrosome maintenance and mitotic fidelity in PC‐3 prostate and MDA‐MB231 mammary cancer cell lines. The maturation‐associated roles of HN1 during cell division by examining the AuroraA‐PLK1 axis involving a plus end kinesin, Eg5 as well as pericentriolar matrix protein (PCM1) as components of centrosomes were established. We found that HN1 co‐localized to centrioles with Eg5 and Aurora A to suppress aberrant spindle formation to ensure the fidelity of centriole/centrosome duplication when overexpressed. Consistently, depleting the HN1 expression using siRNA or shRNA resulted in an increased number of dysregulated mitotic spindle structures, where Aurora A as well as PLK1 co‐localizations with Eg5 and PCM1 were disrupted. Further, the PLK1 and Aurora A kinase's phosphorylations also decreased, confirming the hypothesis that the cells struggle in mitotic progression, display nuclear and cytokinetic abnormalities with supernumerary but immature mononucleated centrosomes. In summary, we described the role of HN1 in centrosome nucleation/maturation in PLK1‐Eg5 axis and concomitant mitotic spindle formation in human cells.
HN1 的表达通过极光 A-PLK1-Eg5 轴促进有丝分裂的保真度
血液学和神经学表达 1(HN1)是黑腹果蝇 Jupiter 蛋白的同源物,在黑腹果蝇中,它是一种微管相关蛋白。然而,在哺乳动物细胞中,HN1 部分与中心体中的 y-tubulin、稳定微管的 Stathmin 和调控细胞周期的 Cyclin B1 的 Cdh1 相关。此外,HN1 的过表达也会导致有丝分裂早期退出。HN1的其他分子功能和相互作用尚不清楚。在此,基于之前的分析,我们进一步研究了 PC-3 前列腺癌细胞系和 MDA-MB231 乳腺癌细胞系中 HN1 在中心体维持和有丝分裂忠实性中的作用。通过研究 AuroraA-PLK1 轴,我们确定了 HN1 在细胞分裂过程中的成熟相关作用,该轴涉及作为中心体成分的加端驱动蛋白 Eg5 和周室基质蛋白(PCM1)。我们发现,HN1 与 Eg5 和极光 A 共同定位在中心体上,抑制异常纺锤体的形成,以确保过表达时中心体/中心粒复制的可靠性。同样,使用 siRNA 或 shRNA 清除 HN1 表达会导致有丝分裂纺锤体结构失调的数量增加,其中极光 A 以及 PLK1 与 Eg5 和 PCM1 的共定位被破坏。此外,PLK1 和极光 A 激酶的磷酸化程度也降低了,这证实了一种假设,即细胞在有丝分裂过程中挣扎,显示出核和细胞运动异常,具有超数但不成熟的单核中心体。综上所述,我们描述了HN1在PLK1-Eg5轴心体成核/成熟过程中的作用,以及在人体细胞中伴随的有丝分裂纺锤体的形成。
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来源期刊
Cytoskeleton
Cytoskeleton CELL BIOLOGY-
CiteScore
5.50
自引率
3.40%
发文量
24
审稿时长
6-12 weeks
期刊介绍: Cytoskeleton focuses on all aspects of cytoskeletal research in healthy and diseased states, spanning genetic and cell biological observations, biochemical, biophysical and structural studies, mathematical modeling and theory. This includes, but is certainly not limited to, classic polymer systems of eukaryotic cells and their structural sites of attachment on membranes and organelles, as well as the bacterial cytoskeleton, the nucleoskeleton, and uncoventional polymer systems with structural/organizational roles. Cytoskeleton is published in 12 issues annually, and special issues will be dedicated to especially-active or newly-emerging areas of cytoskeletal research.
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