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影响全长和截断型 SRSF3 蛋白在人癌细胞中表达和稳定性的因素。

Factors affecting the expression and stability of full-length and truncated SRSF3 proteins in human cancer cells.

机构信息

Department of Cardiovascular Surgery, Chung Shan Medical University Hospital, Chung Shan Medical University, Taichung City, 402, Taiwan, Republic of China.

Institute of Medicine, Chung Shan Medical University, Taichung City, 402, Taiwan, Republic of China.

出版信息

Sci Rep. 2024 Jun 22;14(1):14397. doi: 10.1038/s41598-024-64640-1.

Abstract

Alternative splicing plays a crucial role in increasing the diversity of mRNAs expressed in the genome. Serine/arginine-rich splicing factor 3 (SRSF3) is responsible for regulating the alternative splicing of its own mRNA and ensuring that its expression is balanced to maintain homeostasis. Moreover, the exon skipping of SRSF3 leads to the production of a truncated protein instead of a frameshift mutation that generates a premature termination codon (PTC). However, the precise regulatory mechanism involved in the splicing of SRSF3 remains unclear. In this study, we first established a platform for coexpressing full-length SRSF3 (SRSF3-FL) and SRSF3-PTC and further identified a specific antibody against the SRSF3-FL and truncated SRSF3 (SRSF3-TR) proteins. Next, we found that exogenously overexpressing SRSF3-FL or SRSF3-PTC failed to reverse the effects of digoxin, caffeine, or both in combination on this molecule and its targets. Endoplasmic reticulum-related pathways, transcription factors, and chemicals such as palmitic acid and phosphate were found to be involved in the regulation of SRSF3 expression. The downregulation of SRSF3-FL by palmitic acid and phosphate was mediated via different regulatory mechanisms in HeLa cells. In summary, we provide new insights into the altered expression of the SRSF3-FL and SRSF3-TR proteins for the identification of the functions of SRSF3 in cells.

摘要

选择性剪接在增加基因组中表达的 mRNA 多样性方面起着至关重要的作用。丝氨酸/精氨酸丰富的剪接因子 3(SRSF3)负责调节其自身 mRNA 的选择性剪接,确保其表达平衡以维持内稳态。此外,SRSF3 的外显子跳跃导致产生截断蛋白,而不是产生移码突变导致提前终止密码子(PTC)。然而,SRSF3 剪接中涉及的确切调节机制尚不清楚。在这项研究中,我们首先建立了共表达全长 SRSF3(SRSF3-FL)和 SRSF3-PTC 的平台,进一步鉴定了针对 SRSF3-FL 和截断 SRSF3(SRSF3-TR)蛋白的特异性抗体。接下来,我们发现外源性过表达 SRSF3-FL 或 SRSF3-PTC 均不能逆转地高辛、咖啡因或两者联合对该分子及其靶标的作用。内质网相关途径、转录因子以及化学物质如棕榈酸和磷酸盐被发现参与 SRSF3 表达的调节。棕榈酸和磷酸盐下调 SRSF3-FL 是通过 HeLa 细胞中不同的调节机制介导的。总之,我们为鉴定 SRSF3 在细胞中的功能提供了 SRSF3-FL 和 SRSF3-TR 蛋白表达改变的新见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ff96/11193772/3ea65d8c462e/41598_2024_64640_Fig1_HTML.jpg

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