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Glutamine Synthetase Is a Genetic Determinant of Cell Type–Specific Glutamine Independence in Breast Epithelia

机译:谷氨酰胺合成酶是细胞上皮特异性谷氨酰胺独立性的遗传决定因素。

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摘要

Although significant variations in the metabolic profiles exist among different cells, little is understood in terms of genetic regulations of such cell type–specific metabolic phenotypes and nutrient requirements. While many cancer cells depend on exogenous glutamine for survival to justify the therapeutic targeting of glutamine metabolism, the mechanisms of glutamine dependence and likely response and resistance of such glutamine-targeting strategies among cancers are largely unknown. In this study, we have found a systematic variation in the glutamine dependence among breast tumor subtypes associated with mammary differentiation: basal- but not luminal-type breast cells are more glutamine-dependent and may be susceptible to glutamine-targeting therapeutics. Glutamine independence of luminal-type cells is associated mechanistically with lineage-specific expression of glutamine synthetase (GS). Luminal cells can also rescue basal cells in co-culture without glutamine, indicating a potential for glutamine symbiosis within breast ducts. The luminal-specific expression of GS is directly induced by GATA3 and represses glutaminase expression. Such distinct glutamine dependency and metabolic symbiosis is coupled with the acquisition of the GS and glutamine independence during the mammary differentiation program. Understanding the genetic circuitry governing distinct metabolic patterns is relevant to many symbiotic relationships among different cells and organisms. In addition, the ability of GS to predict patterns of glutamine metabolism and dependency among tumors is also crucial in the rational design and application of glutamine and other metabolic pathway targeted therapies.
机译:尽管不同细胞之间的代谢特征存在显着差异,但对于此类细胞类型特定的代谢表型和营养需求的遗传调控了解甚少。尽管许多癌细胞的生存依赖外源性谷氨酰胺来证明谷氨酰胺代谢的治疗靶向是合理的,但是在癌症中,谷氨酰胺依赖性的机制以及这种谷氨酰胺靶向策略的可能反应和耐药性在很大程度上尚不清楚。在这项研究中,我们发现了与乳腺分化有关的乳腺肿瘤亚型之间对谷氨酰胺的系统性变异:基础型而不是管腔型的乳腺细胞对谷氨酰胺的依赖性更高,并且可能易受谷氨酰胺靶向治疗的影响。腔型细胞的谷氨酰胺独立性与谷氨酰胺合成酶(GS)的谱系特异性表达在机制上相关。在没有谷氨酰胺的共培养中,发光细胞还可以拯救基础细胞,这表明在乳腺导管内可能发生谷氨酰胺共生。 GS的腔特异性表达由GATA3直接诱导并抑制谷氨酰胺酶表达。在乳腺分化程序中,这种独特的谷氨酰胺依赖性和代谢共生与GS的获得和谷氨酰胺独立性结合。了解控制不同代谢模式的遗传电路与不同细胞和生物之间的许多共生关系有关。此外,GS预测谷氨酰胺代谢模式和肿瘤之间依赖性的能力在谷氨酰胺和其他代谢途径靶向疗法的合理设计和应用中也至关重要。

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