乳酸脱氢酶a异构体乳酸脱氢酶α促进糖酵解和肿瘤进展。

Bingqing Huang, Wencui Shen, Yujiao Jia, Li Qin, Haoxu Wang, Qi Sun, Zhijian Xiao, Rongxin Zhang, Huijun Wang
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摘要

乳酸脱氢酶A (LDHA)在多种癌症类型中上调,并有助于Warburg效应。多项研究发现,许多肿瘤相关基因具有亚型,并在促进癌症发展中发挥重要作用。在这里,我们发现了一个新的LDHA转录物,它产生了一个比LDHA大3 kDa的新蛋白,我们将其命名为LDHAα。我们发现多种癌细胞表达LDHAα,并且异位表达LDHAα导致体外更高的增殖和迁移率。体内异位表达LDHAα也能促进肿瘤细胞的生长。相反,CRISPR-sgRNA缺失LDHAα可显著抑制肿瘤细胞的生长。发现LDHAα主要位于细胞质中,过表达或缺失可显著影响肿瘤细胞的葡萄糖摄取和乳酸生成。进一步研究表明,c-MYC和FOXM1可以显著调节LDHA和LDHAα的表达,尤其是c-MYC。我们发现一种靶向LDHA的小分子化合物也能抑制LDHAα的酶活性。人急性淋巴细胞白血病和结直肠癌组织标本中LDHAα、LDHA和c-MYC的表达明显高于正常对照组。总之,我们的研究确定了LDHAα是LDHA的一个亚型,并强调了其在肿瘤代谢中的关键作用,为肿瘤的诊断和治疗提供了一个潜在的新的治疗靶点。
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LDHAα, a lactate dehydrogenase A isoform, promotes glycolysis and tumor progression.

Lactate dehydrogenase A (LDHA) is upregulated in multiple cancer types and contributes to the Warburg effect. Several studies have found that many tumor-related genes have subtypes and play important roles in promoting cancer development. Here, we identified a novel LDHA transcript, which produced a new protein 3 kDa larger than LDHA, which we named LDHAα. We found that multiple cancer cell lines express LDHAα, and ectopic expression of LDHAα led to a higher proliferation and migration rate in vitro. Ectopic expression of LDHAα could also promote tumor cell growth in vivo. Conversely, deletion of LDHAα by CRISPR-sgRNA significantly inhibited the growth of tumor cells. LDHAα was found to be mainly located in the cytoplasm, and overexpression or deletion of LDHAα could significantly affect the glucose uptake and lactate production of tumor cells. Further investigation showed that c-MYC and FOXM1 could markedly modulate the expression of both LDHA and LDHAα, especially c-MYC. We found that a small molecular compound targeting LDHA could also inhibit the enzyme activity of LDHAα. LDHAα, LDHA and c-MYC expression was significantly higher in human acute lymphocytic leukemia and colorectal cancer tissue specimens compared to normal controls. In conclusion, our study identified LDHAα as a subtype of LDHA and highlighted its critical role in tumor metabolism, providing a potential new therapeutic target for tumor diagnosis and treatment.

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