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DiaPASEF 蛋白谱分析表明 caspase-9 抑制诱导软骨细胞中细胞生长和代谢转换的变化。

DiaPASEF proteotype analysis indicates changes in cell growth and metabolic switch induced by caspase-9 inhibition in chondrogenic cells.

机构信息

Department of Biochemistry, Faculty of Science, Masaryk University, Brno, Czech Republic.

Laboratory of Odontogenesis and Osteogenesis, Institute of Animal Physiology and Genetics, Czech Academy of Sciences, Brno, Czech Republic.

出版信息

Proteomics. 2023 Jun;23(11):e2200408. doi: 10.1002/pmic.202200408. Epub 2023 Apr 7.

DOI:10.1002/pmic.202200408
PMID:36960851
Abstract

Caspase-9 is the major apical caspase responsible for triggering the intrinsic apoptotic pathway. Our previous study indicated that specific inhibition of caspase-9 caused microscopically evident alterations in appearance of the primary chondrogenic cultures which cannot be explained by decrease in apoptosis. To describe a complex molecular background of this effect, proteomics analysis of control and caspase-9 inhibitor-treated chondrogenic cultures were performed. Proteins were extracted, identified and quantified using LC-MS in both data dependent and data independent acquisition (DIA) mode. While directDIA analysis of diaPASEF data obtained using timsTOF Pro LC-MS system revealed 7849 protein groups (Q-value <0.01), a parallel analysis of iTRAQ-2DLC-MS3 and conventional DIA-MS data identified only 5146 and 4098 protein groups, respectively, showing diaPASEF a superior method for the study. The detailed analysis of diaPASEF data disclosed 236/551 significantly down-/up-regulated protein groups after caspase-9 inhibition, respectively (|log2FC|>0.58, Q value <0.05). Classification of downregulated proteins revealed changes in extracellular matrix organization, collagen metabolism, and muscle system processes. Moreover, deregulations suggest a switch from glycolytic to lipid based metabolism in the inhibited cells. No essential changes were found in the proteins involved in apoptosis. The data indicate new non-apoptotic participation of caspases in chondrocyte homeostasis with potential applications in cartilage pathophysiology.

摘要

Caspase-9 是负责触发内在凋亡途径的主要顶端半胱天冬酶。我们之前的研究表明,caspase-9 的特异性抑制导致原代软骨细胞的外观出现明显的显微镜下改变,这不能用凋亡减少来解释。为了描述这种效应的复杂分子背景,对对照和 caspase-9 抑制剂处理的软骨细胞培养物进行了蛋白质组学分析。使用 LC-MS 在数据依赖和独立采集 (DIA) 模式下提取、鉴定和定量蛋白质。虽然使用 timsTOF Pro LC-MS 系统直接进行 DIA 分析可获得 7849 个蛋白组(Q 值 <0.01),但平行分析 iTRAQ-2DLC-MS3 和常规 DIA-MS 数据仅分别鉴定出 5146 和 4098 个蛋白组,表明 diaPASEF 是一种更适合该研究的方法。对 diaPASEF 数据的详细分析揭示了 caspase-9 抑制后分别有 236/551 个显著下调/上调蛋白组(|log2FC|>0.58,Q 值 <0.05)。下调蛋白的分类揭示了细胞外基质组织、胶原蛋白代谢和肌肉系统过程的变化。此外,这些失调表明受抑制细胞中的代谢从糖酵解向基于脂质的代谢转变。在参与凋亡的蛋白质中没有发现基本变化。这些数据表明半胱天冬酶在软骨细胞稳态中有新的非凋亡参与,具有潜在的软骨病理生理学应用。

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