Mohás-Cseh Judit, Molnár Gergő Attila, Pap Marianna, Laczy Boglárka, Vas Tibor, Kertész Melinda, Németh Krisztina, Hetényi Csaba, Csikós Orsolya, Tóth Gábor K, Reményi Attila, Wittmann István
2nd Department of Medicine and Nephrology-Diabetes Center, University of Pécs Medical School, 7624 Pécs, Hungary.
Department of Medical Biology and Central Electron Microscopic Laboratory, University of Pécs Medical School, 7643 Pécs, Hungary.
Biomedicines. 2022 Apr 22;10(5):975. doi: 10.3390/biomedicines10050975.
A link between oxidative stress and insulin resistance has been suggested. Hydroxyl free radicals are known to be able to convert phenylalanine (Phe) into the non-physiological tyrosine isoforms ortho- and meta-tyrosine (o-Tyr, m-Tyr). The aim of our study was to examine the role of o-Tyr and m-Tyr in the development of insulin resistance. We found that insulin-induced uptake of glucose was blunted in cultures of 3T3-L1 grown on media containing o- or m-Tyr. We show that these modified amino acids are incorporated into cellular proteins. We focused on insulin receptor substrate 1 (IRS-1), which plays a role in insulin signaling. The activating phosphorylation of IRS-1 was increased by insulin, the effect of which was abolished in cells grown in m-Tyr or o-Tyr media. We found that phosphorylation of m- or o-Tyr containing IRS-1 segments by insulin receptor (IR) kinase was greatly reduced, PTP-1B phosphatase was incapable of dephosphorylating phosphorylated m- or o-Tyr IRS-1 peptides, and the SH2 domains of phosphoinositide 3-kinase (PI3K) bound the o-Tyr IRS-1 peptides with greatly reduced affinity. According to our data, m- or o-Tyr incorporation into IRS-1 modifies its protein-protein interactions with regulating enzymes and effectors, thus IRS-1 eventually loses its capacity to play its role in insulin signaling, leading to insulin resistance.
氧化应激与胰岛素抵抗之间的联系已被提出。已知羟基自由基能够将苯丙氨酸(Phe)转化为非生理性的酪氨酸异构体邻酪氨酸和间酪氨酸(o-Tyr,m-Tyr)。我们研究的目的是探讨o-Tyr和m-Tyr在胰岛素抵抗发生发展中的作用。我们发现,在含有o-Tyr或m-Tyr的培养基上生长的3T3-L1细胞培养物中,胰岛素诱导的葡萄糖摄取受到抑制。我们表明,这些修饰的氨基酸被整合到细胞蛋白质中。我们聚焦于在胰岛素信号传导中起作用的胰岛素受体底物1(IRS-1)。胰岛素增加了IRS-1的激活磷酸化,而在m-Tyr或o-Tyr培养基中生长的细胞中,这种作用被消除。我们发现,胰岛素受体(IR)激酶对含m-Tyr或o-Tyr的IRS-1片段的磷酸化大大减少,蛋白酪氨酸磷酸酶-1B(PTP-1B)无法使磷酸化的含m-Tyr或o-Tyr的IRS-1肽去磷酸化,并且磷脂酰肌醇3激酶(PI3K)的SH2结构域与o-Tyr IRS-1肽的结合亲和力大大降低。根据我们的数据,m-Tyr或o-Tyr掺入IRS-1会改变其与调节酶和效应器的蛋白质-蛋白质相互作用,因此IRS-1最终失去其在胰岛素信号传导中发挥作用的能力,导致胰岛素抵抗。