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谷氨酰胺缺乏引发哺乳动物杆状结构和环状结构的可逆组装。

Glutamine deprivation initiates reversible assembly of mammalian rods and rings.

作者信息

Calise S John, Carcamo Wendy C, Krueger Claire, Yin Joyce D, Purich Daniel L, Chan Edward K L

机构信息

Department of Oral Biology, University of Florida, 1395 Center Drive, Gainesville, FL, 32610-0424, USA.

出版信息

Cell Mol Life Sci. 2014 Aug;71(15):2963-73. doi: 10.1007/s00018-014-1567-6. Epub 2014 Jan 30.

Abstract

Rods and rings (RR) are protein assemblies composed of cytidine triphosphate synthetase type 1 (CTPS1) and inosine monophosphate dehydrogenase type 2 (IMPDH2), key enzymes in CTP and GTP biosynthesis. Small-molecule inhibitors of CTPS1 or IMPDH2 induce RR assembly in various cancer cell lines within 15 min to hours. Since glutamine is an essential amide nitrogen donor in these nucleotide biosynthetic pathways, glutamine deprivation was examined to determine whether it leads to RR formation. HeLa cells cultured in normal conditions did not show RR, but after culturing in media lacking glutamine, short rods (<2 μm) assembled after 24 h, and longer rods (>5 μm) formed after 48 h. Upon supplementation with glutamine or guanosine, these RR underwent almost complete disassembly within 15 min. Inhibition of glutamine synthetase with methionine sulfoximine also increased RR assembly in cells deprived of glutamine. Taken together, our data support the hypothesis that CTP/GTP biosynthetic enzymes polymerize to form RR in response to a decreased intracellular level of glutamine. We speculate that rod and ring formation is an adaptive metabolic response linked to disruption of glutamine homeostasis.

摘要

杆状和环状结构(RR)是由胞苷三磷酸合成酶1型(CTPS1)和肌苷单磷酸脱氢酶2型(IMPDH2)组成的蛋白质聚集体,它们是CTP和GTP生物合成中的关键酶。CTPS1或IMPDH2的小分子抑制剂可在15分钟至数小时内诱导多种癌细胞系中RR的组装。由于谷氨酰胺是这些核苷酸生物合成途径中必需的酰胺氮供体,因此研究了谷氨酰胺剥夺情况,以确定其是否会导致RR形成。在正常条件下培养的HeLa细胞未显示出RR,但在缺乏谷氨酰胺的培养基中培养后,24小时后组装出短杆(<2μm),48小时后形成长杆(>5μm)。补充谷氨酰胺或鸟苷后,这些RR在15分钟内几乎完全解体。用甲硫氨酸亚砜亚胺抑制谷氨酰胺合成酶也增加了缺乏谷氨酰胺的细胞中RR的组装。综上所述,我们的数据支持这样的假设,即CTP/GTP生物合成酶会因细胞内谷氨酰胺水平降低而聚合形成RR。我们推测杆状和环状结构的形成是一种与谷氨酰胺稳态破坏相关的适应性代谢反应。

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