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PKM 同工型的相互消除:拼接信号对 CRISPR/Cas9 介导的角质形成细胞基因编辑的矛盾结果和不同影响。

Reciprocal abrogation of PKM isoforms: contradictory outcomes and differing impact of splicing signal on CRISPR/Cas9 mediates gene editing in keratinocytes.

机构信息

Pharmazentrum Frankfurt/ZAFES, General Pharmacology and Toxicology, Faculty of Medicine, Goethe University Frankfurt, Germany.

Faculty of Medicine, Institute of Biochemistry I, Goethe University Frankfurt, Germany.

出版信息

FEBS J. 2023 May;290(9):2338-2365. doi: 10.1111/febs.16625. Epub 2022 Sep 24.

Abstract

The healing of wounded skin is a highly organized process involving a massive cell in- and outflux, proliferation and tissue remodelling. It is well accepted that metabolic constraints such as diabetes mellitus, overweight or anorexia impairs wound healing. Indeed, wound inflammation involves a boost of overall metabolic changes. As wound healing converges inflammatory processes that are also common to transformation, we investigate the functional role of the pro-neoplastic factor pyruvate kinase (PK) M2 and its metabolic active splice variant PKM1 in keratinocytes. Particularly, we challenge the impact of reciprocal ablation of PKM1 or two expression. Here, CRISPR/Cas9 genome editing of the PKM gene in HaCaT reveals an unexpected mutational bias at the 3'SS of exon 9, whereas no preference for any particular kind of mutation at exon 10 3' splice, despite the close vicinity (400 nucleotides apart) and sequence similarity between the two sites. Furthermore, as opposed to transient silencing of PKM2, exclusion splicing of PKM2 via genome editing mutually increases PKM1 mRNA and protein expression and compensates for the absence of PKM2, whereas the reciprocal elimination of PKM1 splicing reduces PKM2 expression and impedes cell proliferation, thus unveiling an essential role for PKM1 in growth and metabolic balance of HaCaT keratinocytes.

摘要

创伤皮肤的愈合是一个高度组织化的过程,涉及大量的细胞内流和外流、增殖和组织重塑。人们普遍认为,代谢限制如糖尿病、超重或厌食症会损害伤口愈合。事实上,伤口炎症涉及到整体代谢变化的增加。由于伤口愈合汇聚了也常见于转化的炎症过程,我们研究了促瘤因子丙酮酸激酶(PK)M2 及其代谢活性剪接变体 PKM1 在角质形成细胞中的功能作用。特别是,我们挑战了 PKM1 或两种表达的相互缺失的影响。在这里,通过 CRISPR/Cas9 基因组编辑 HaCaT 中的 PKM 基因,揭示了在 9 号外显子的 3'SS 处出现了意想不到的突变偏性,而在外显子 10 的 3'剪接处没有任何特定类型突变的偏好,尽管两个位点非常接近(相隔 400 个核苷酸)且序列相似。此外,与 PKM2 的瞬时沉默相反,通过基因组编辑排除 PKM2 的剪接会相互增加 PKM1 mRNA 和蛋白表达,并补偿 PKM2 的缺失,而 PKM1 剪接的相互消除会降低 PKM2 的表达并阻碍细胞增殖,从而揭示了 PKM1 在 HaCaT 角质形成细胞的生长和代谢平衡中的重要作用。

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