Multi-omics characterization of Microtubule-actin cross linking factor 1 (MACF1) using the ISB-Cancer Genomics Cloud

Dondra Bailey, Kawther Abdilleh, Boris Aguilar, Alexis McClary
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Abstract

Establishment of cell polarity across cell types and organisms involves distinct mechanisms that follow a common pattern: first a polarity cue arises, followed by asymmetric organization executed by polarity proteins. Loss of cell polarity has a key role in cancer development. The MACF1 gene, Microtubule actin cross-linking factor 1, or MACF1, a cytoskeletal protein is involved in oocyte development, cell proliferation, and cell migration. In addition to these roles, MACF1 is linked to metastatic invasion leading to tumor progression in numerous human cancers including gynecological cancers of endometrial and ovarian cancer. Given the functional importance of cell polarity, here we provide computational evidence of MACF1 in gynecological cancers. The comparison of multi-omic data for patient tumor and normal cells facilitates the understanding of the molecular mechanisms that contribute to tumor cell proliferation, abnormal cell adhesion and cell migration. Leveraging the rich datasets hosted by the NCI-funded ISB-Cancer Genomics Cloud, we performed a cloud-based patient cohort analysis across diverse multi-omics datasets. We quantified differential gene expression profiles from patients in the cohort as well as identified somatic mutation differences. The most common genomic alteration for MACF1 was the in-frame mutation. Genomic alterations and mutations were aligned to functional domains of the MACF1 protein to determine both frequency and spatial distribution. Gene-gene expression correlation analyses identified statistically significant correlations between MACF1 and other well-known cancer driver genes. Together, using a data driven cloud-computing approach we gain novel insights into the role of MACF1 regulation of cell polarity in the progression of cancer.
微管-肌动蛋白交联因子1 (MACF1)的多组学特性研究
细胞类型和生物体之间的细胞极性建立涉及遵循共同模式的不同机制:首先产生极性提示,然后由极性蛋白执行不对称组织。细胞极性的丧失在癌症的发展中起着关键作用。MACF1基因,微管肌动蛋白交联因子1,或MACF1,是一种细胞骨架蛋白,参与卵母细胞发育、细胞增殖和细胞迁移。除了这些作用外,MACF1还与转移性侵袭有关,导致许多人类癌症的肿瘤进展,包括妇科子宫内膜癌和卵巢癌。考虑到细胞极性的功能重要性,我们在这里提供了MACF1在妇科癌症中的计算证据。通过对患者肿瘤细胞和正常细胞的多组学数据进行比较,有助于了解肿瘤细胞增殖、细胞异常粘附和细胞迁移的分子机制。利用由nci资助的isb -癌症基因组云托管的丰富数据集,我们在不同的多组学数据集上进行了基于云的患者队列分析。我们量化了该队列患者的差异基因表达谱,并确定了体细胞突变差异。MACF1最常见的基因组变异是框内突变。基因组改变和突变与MACF1蛋白的功能域一致,以确定频率和空间分布。基因-基因表达相关性分析发现,MACF1与其他众所周知的癌症驱动基因之间存在统计学意义上的相关性。总之,使用数据驱动的云计算方法,我们对MACF1调节细胞极性在癌症进展中的作用获得了新的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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