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全羧化酶合成酶缺陷型MDA-MB-231乳腺癌细胞的蛋白质组学分析揭示了与细胞死亡、生长信号受损及代谢相关的生化变化。

Proteomic analysis of holocarboxylase synthetase deficient-MDA-MB-231 breast cancer cells revealed the biochemical changes associated with cell death, impaired growth signaling, and metabolism.

作者信息

Sukjoi Witchuda, Young Clifford, Acland Mitchell, Siritutsoontorn Siraprapa, Roytrakul Sittiruk, Klingler-Hoffmann Manuela, Hoffmann Peter, Jitrapakdee Sarawut

机构信息

Department of Biochemistry, Faculty of Science, Mahidol University, Bangkok, Thailand.

Clinical and Health Sciences, University of South Australia, Adelaide, SA, Australia.

出版信息

Front Mol Biosci. 2024 Jan 11;10:1250423. doi: 10.3389/fmolb.2023.1250423. eCollection 2023.

Abstract

We have previously shown that the holocarboxylase synthetase (HLCS) is overexpressed in breast cancer tissue of patients, and silencing of its expression in triple-negative cancer cell line inhibits growth and migration. Here we investigated the global biochemical changes associated with HLCS knockdown in MDA-MB-231 cells to discern the pathways that involve HLCS. Proteomic analysis of two independent HLCS knockdown cell lines identified 347 differentially expressed proteins (DEPs) whose expression change > 2-fold ( < 0.05) relative to the control cell line. GO enrichment analysis showed that these DEPs were mainly associated with the cellular process such as cellular metabolic process, cellular response to stimulus, and cellular component organization or biogenesis, metabolic process, biological regulation, response to stimuli, localization, and signaling. Among the 347 identified DEPs, 64 proteins were commonly found in both HLCS knockdown clones, confirming their authenticity. Validation of some of these DEPs by Western blot analysis showed that plasminogen activator inhibitor type 2 (SerpinB2) and interstitial collagenase (MMP1) were approximately 90% decreased in HLCS knockdown cells, consistent with a 50%-60% decrease in invasion ability of knockdown cells. Notably, argininosuccinate synthase 1 (ASS1), one of the enzymes in the urea cycle, showed approximately a 10-fold increase in the knockdown cells, suggesting the crucial role of HLCS in supporting the urea cycle in the triple-negative cancer cell line. Collectively, our proteomic data provide biochemical insights into how suppression of HLCS expression perturbs global changes in cellular processes and metabolic pathways, impairing cell growth and invasion.

摘要

我们之前已经表明,全羧化酶合成酶(HLCS)在患者的乳腺癌组织中过表达,并且在三阴性癌细胞系中沉默其表达可抑制生长和迁移。在此,我们研究了与MDA-MB-231细胞中HLCS基因敲低相关的整体生化变化,以识别涉及HLCS的信号通路。对两个独立的HLCS基因敲低细胞系进行蛋白质组学分析,鉴定出347种差异表达蛋白(DEP),其相对于对照细胞系的表达变化> 2倍(<0.05)。基因本体(GO)富集分析表明,这些DEP主要与细胞过程相关,如细胞代谢过程、细胞对刺激的反应、细胞成分组织或生物发生、代谢过程、生物调节、对刺激的反应、定位和信号传导。在鉴定出的347种DEP中,有64种蛋白在两个HLCS基因敲低克隆中均常见,证实了它们的真实性。通过蛋白质免疫印迹分析对其中一些DEP进行验证,结果显示,在HLCS基因敲低的细胞中,纤溶酶原激活物抑制剂2(SerpinB2)和间质胶原酶(MMP1)减少了约90%,这与基因敲低细胞侵袭能力降低50%-60%一致。值得注意的是,尿素循环中的一种酶精氨琥珀酸合酶1(ASS1)在基因敲低的细胞中显示出约10倍的增加,这表明HLCS在支持三阴性癌细胞系中的尿素循环中起关键作用。总体而言,我们的蛋白质组学数据为HLCS表达抑制如何扰乱细胞过程和代谢途径中的整体变化、损害细胞生长和侵袭提供了生化见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6535/10812114/d2d9096edd6b/fmolb-10-1250423-g001.jpg

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