Oxidative and Excitatory Neurotoxic Stresses in CRISPR/Cas9-Induced Kynurenine Aminotransferase Knockout Mice: A Novel Model for Despair-Based Depression and Post-Traumatic Stress Disorder.

IF 3.1 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Frontiers in bioscience (Landmark edition) Pub Date : 2025-01-20 DOI:10.31083/FBL25706
Ágnes Szabó, Zsolt Galla, Eleonóra Spekker, Mónika Szűcs, Diána Martos, Keiko Takeda, Kinuyo Ozaki, Hiromi Inoue, Sayo Yamamoto, József Toldi, Etsuro Ono, László Vécsei, Masaru Tanaka
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Abstract

Backgrounds: Memory and emotion are especially vulnerable to psychiatric disorders such as post-traumatic stress disorder (PTSD), which is linked to disruptions in serotonin (5-HT) metabolism. Over 90% of the 5-HT precursor tryptophan (Trp) is metabolized via the Trp-kynurenine (KYN) metabolic pathway, which generates a variety of bioactive molecules. Dysregulation of KYN metabolism, particularly low levels of kynurenic acid (KYNA), appears to be linked to neuropsychiatric disorders. The majority of KYNA is produced by the aadat (kat2) gene-encoded mitochondrial kynurenine aminotransferase (KAT) isotype 2. Little is known about the consequences of deleting the KYN enzyme gene.

Methods: In CRISPR/Cas9-induced aadat knockout (kat2-/-) mice, we examined the effects on emotion, memory, motor function, Trp and its metabolite levels, enzyme activities in the plasma and urine of 8-week-old males compared to wild-type mice.

Results: Transgenic mice showed more depressive-like behaviors in the forced swim test, but not in the tail suspension, anxiety, or memory tests. They also had fewer center field and corner entries, shorter walking distances, and fewer jumping counts in the open field test. Plasma metabolite levels are generally consistent with those of urine: antioxidant KYNs, 5-hydroxyindoleacetic acid, and indole-3-acetic acid levels were lower; enzyme activities in KATs, kynureninase, and monoamine oxidase/aldehyde dehydrogenase were lower, but kynurenine 3-monooxygenase was higher; and oxidative stress and excitotoxicity indices were higher. Transgenic mice displayed depression-like behavior in a learned helplessness model, emotional indifference, and motor deficits, coupled with a decrease in KYNA, a shift of Trp metabolism toward the KYN-3-hydroxykynurenine pathway, and a partial decrease in the gut microbial Trp-indole pathway metabolite.

Conclusions: This is the first evidence that deleting the aadat gene induces depression-like behaviors uniquely linked to experiences of despair, which appear to be associated with excitatory neurotoxic and oxidative stresses. This may lead to the development of a double-hit preclinical model in despair-based depression, a better understanding of these complex conditions, and more effective therapeutic strategies by elucidating the relationship between Trp metabolism and PTSD pathogenesis.

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CRISPR/Cas9诱导的犬尿氨酸氨基转移酶基因敲除小鼠的氧化和兴奋性神经毒性应激:绝望型抑郁症和创伤后应激障碍的新型模型。
背景:记忆和情绪特别容易受到精神疾病的影响,如创伤后应激障碍(PTSD),这与血清素(5-HT)代谢的中断有关。超过90%的5-HT前体色氨酸(Trp)通过色氨酸-犬尿氨酸(KYN)代谢途径代谢,产生多种生物活性分子。KYN代谢失调,特别是KYNA水平低,似乎与神经精神疾病有关。大部分KYNA是由aadat (kat2)基因编码的线粒体犬尿氨酸氨基转移酶(KAT)同型2产生的。人们对删除KYN酶基因的后果知之甚少。方法:在CRISPR/ cas9诱导的aadat基因敲除(kat2-/-)小鼠中,与野生型小鼠相比,我们检测了对8周龄雄性小鼠情绪、记忆、运动功能、色氨酸及其代谢物水平、血浆和尿液中酶活性的影响。结果:转基因小鼠在强迫游泳测试中表现出更多的抑郁样行为,但在悬尾、焦虑和记忆测试中没有表现出来。在开阔场地测试中,他们也有更少的中心场地和角落场地,更短的步行距离和更少的跳跃次数。血浆代谢物水平与尿液基本一致:抗氧化剂KYNs、5-羟基吲哚乙酸和吲哚-3-乙酸水平较低;KATs、犬尿氨酸酶和单胺氧化酶/醛脱氢酶活性较低,犬尿氨酸3-单加氧酶活性较高;氧化应激和兴奋毒性指标较高。转基因小鼠在习得性无助模型、情绪冷漠和运动缺陷中表现出抑郁样行为,同时KYNA减少,Trp代谢向kyn -3-羟基犬尿氨酸途径转移,肠道微生物Trp-吲哚途径代谢物部分减少。结论:这是第一个证据表明,删除aadat基因会诱发与绝望经历独特相关的抑郁样行为,这种行为似乎与兴奋性神经毒性和氧化应激有关。通过阐明Trp代谢与创伤后应激障碍发病机制之间的关系,这可能会导致基于绝望的抑郁症的双重打击临床前模型的发展,更好地理解这些复杂的疾病,并提供更有效的治疗策略。
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