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CTPS2通过与CTPS1相互作用来调节CTP合成酶的活性。

CTPS2 regulates CTP synthetase activity by interacting with CTPS1.

作者信息

Minet Norbert, Heid-Picard Benoît, Masson Vanessa, Loew Damarys, Martin Emmanuel, Latour Sylvain

机构信息

Laboratory of Lymphocyte Activation and Susceptibility to EBV infection, Inserm UMR 1163, Institut Imagine, Paris, France

Université de Paris, Paris, France.

出版信息

Life Sci Alliance. 2025 Sep 16;8(11). doi: 10.26508/lsa.202403117. Print 2025 Nov.

Abstract

CTP synthetases (CTPS) 1 and 2 are responsible for intracellular de novo production of the CTP nucleotide required for DNA replication and cell proliferation. CTPS1 and CTPS2 are co-expressed in most of tissues and share a high structural homology. They form homotetramers that are enzymatically active and aggregate into large intracellular storage filament-like structures termed as cytoophidia. Herein, we found that CTPS1 and CTPS2 co-localized in cytoophidia when co-expressed and CTPS2-containing filaments are dependent on CTPS1 expression. Cytoophidia were not necessary for proliferation because CTPS1 and CTPS2 mutants that are unable to form cytoophidia could sustain normal cell proliferation. CTPS1 and CTPS2 were found to directly interact together independent of polymerization and formation of cytoophidia. When associated with CTPS2, CTPS1 enzymatic activity was decreased and more sensitive to CTP/product negative feedback, suggesting that the presence of CTPS2 modulates CTPS activity. Therefore, our results demonstrate that CTPS1 and CTPS2 do not only function independently, but also associate and form complexes in the absence of polymerization, suggesting the possibility that they directly regulate each other through heterotetramerization.

摘要

CTP合成酶(CTPS)1和2负责细胞内从头合成DNA复制和细胞增殖所需的CTP核苷酸。CTPS1和CTPS2在大多数组织中共同表达,且具有高度的结构同源性。它们形成具有酶活性的同四聚体,并聚集形成称为细胞蛇的大型细胞内储存丝状结构。在此,我们发现CTPS1和CTPS2共表达时在细胞蛇中共定位,且含CTPS2的细丝依赖于CTPS1的表达。细胞蛇对于增殖并非必需,因为无法形成细胞蛇的CTPS1和CTPS2突变体能够维持正常的细胞增殖。我们发现CTPS1和CTPS2直接相互作用,与细胞蛇的聚合和形成无关。当与CTPS2结合时,CTPS1的酶活性降低,且对CTP/产物负反馈更敏感,这表明CTPS2的存在调节CTPS活性。因此,我们的结果表明CTPS1和CTPS2不仅独立发挥作用,而且在不存在聚合的情况下相互关联并形成复合物,这表明它们可能通过异四聚体化直接相互调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4bfe/12442307/c0bb5b881322/LSA-2024-03117_Fig1.jpg

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