LKB1

LKB1
  • 文章类型: Journal Article
    Exo70,一个关键的外囊复合物成分,在癌症转移中,细胞运动和细胞外基质(ECM)重塑至关重要。尽管它有作为药物靶标的潜力,Exo70的翻译后修饰(PTM)的特征不佳。这里,我们报道,通过转谷氨酰胺酶TGM1和TGM3,Exo70在Gln5上与胱抑素A的Lys56转酰胺化,促进肿瘤转移。这种修饰增强了Exo70与其他外囊亚基的关联,分泌基质金属蛋白酶所必需的,形成invadopodia,并将集成蛋白传递到前沿。抑癌肝激酶B1(LKB1),其失活加速了转移,分别在Thr386和Thr282处磷酸化TGM1和TGM3,抑制它们与Exo70的相互作用以及随后的转酰胺作用。斑潜素,美国食品和药物管理局(FDA)批准的药物,抑制Exo70转酰胺化以抑制肿瘤细胞迁移和侵袭。一起,我们的研究结果强调了Exo70转酰胺作用作为一个关键的分子机制和靶点,并提出了作为一种治疗策略,对转移性癌症具有直接的临床转化价值,尤其是那些LKB1损失。
    Exo70, a key exocyst complex component, is crucial for cell motility and extracellular matrix (ECM) remodeling in cancer metastasis. Despite its potential as a drug target, Exo70\'s post-translational modifications (PTMs) are poorly characterized. Here, we report that Exo70 is transamidated on Gln5 with Lys56 of cystatin A by transglutaminases TGM1 and TGM3, promoting tumor metastasis. This modification enhances Exo70\'s association with other exocyst subunits, essential for secreting matrix metalloproteinases, forming invadopodia, and delivering integrins to the leading edge. Tumor suppressor liver kinase B1 (LKB1), whose inactivation accelerates metastasis, phosphorylates TGM1 and TGM3 at Thr386 and Thr282, respectively, to inhibit their interaction with Exo70 and the following transamidation. Cantharidin, a US Food and Drug Administration (FDA)-approved drug, inhibits Exo70 transamidation to restrain tumor cell migration and invasion. Together, our findings highlight Exo70 transamidation as a key molecular mechanism and target and propose cantharidin as a therapeutic strategy with direct clinical translational value for metastatic cancers, especially those with LKB1 loss.
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  • 文章类型: Journal Article
    改变的蛋白质泛素化与癌症有关。据报道,E3泛素连接酶的新型三方基序(TRIM)家族在发育中起着至关重要的作用,增长,和各种肿瘤的转移。TRIM家族成员TRIM27在多种癌症中充当肿瘤发展的潜在启动子。然而,关于胶质母细胞瘤(GBM)中TRIM27的生物学特征和临床相关性知之甚少。这里,我们报告了GBM组织和GBM细胞系中TRIM27表达升高的发现。进一步的功能分析显示,TRIM27缺失在体外和体内均抑制GBM细胞生长。此外,我们发现TRIM27通过增强Warburg效应促进GBM细胞的生长。此外,LKB1/AMPK/mTOR通路的失活对于TRIM27在GBM中的致癌作用至关重要.机械上,TRIM27可以直接与LKB1结合,促进LKB1的泛素化和降解,进而增强Warburg效应和GBM进程。总的来说,这些数据提示TRIM27通过抑制LKB1/AMPK/mTOR轴参与GNM发病机制,可能成为GBM患者潜在的诊断和治疗标志物.
    Altered protein ubiquitination is associated with cancer. The novel tripartite motif (TRIM) family of E3 ubiquitin ligases have been reported to play crucial roles in the development, growth, and metastasis of various tumors. The TRIM family member TRIM27 acts as a potential promoter of tumor development in a wide range of cancers. However, little is known regarding the biological features and clinical relevance of TRIM27 in glioblastoma (GBM). Here, we report findings of elevated TRIM27 expression in GBM tissues and GBM cell lines. Further functional analysis showed that TRIM27 deletion inhibited GBM cell growth both in vitro and in vivo. Furthermore, we found that TRIM27 promoted the growth of GBM cells by enhancing the Warburg effect. Additionally, the inactivation of the LKB1/AMPK/mTOR pathway was critical for the oncogenic effects of TRIM27 in GBM. Mechanistically, TRIM27 could directly bind to LKB1 and promote the ubiquitination and degradation of LKB1, which in turn enhanced the Warburg effect and GBM progression. Collectively, these data suggest that TRIM27 contributes to GNM pathogenesis by inhibiting the LKB1/AMPK/mTOR axis and may be a promising candidate as a potential diagnostic and therapeutic marker for patients with GBM.
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  • 文章类型: Journal Article
    Erianin,在石斛提取物中发现的一种二苄基化合物,具有广泛的抗癌活性。然而,其在胃癌(GC)中的作用机制尚不清楚。LKB1是一种抑癌基因,它的突变是各种癌症的重要驱动因素。然而,一些研究报告了相互矛盾的发现。在这项研究中,我们结合生物信息学和体内外实验来研究Erianin治疗GC的作用和潜在机制。结果表明,LKB1在患者肿瘤组织和GC细胞中高表达,与患者预后不良有关。Erianin能促进GC细胞凋亡,抑制划痕修复,迁移,入侵,和上皮-间质转化(EMT)特征。Erianin剂量依赖性地抑制LKB1,SIK2,SIK3和PARD3的表达,但对SIK1没有显着影响。Erianin还抑制CDX小鼠模型中的肿瘤生长。出乎意料的是,5-FU对LKB1也表现出一定的抑制作用。Erianin和5-FU的组合显著提高了5-FU在GC细胞和异种移植小鼠模型的生长中的抗肿瘤功效。总之,Erianin是一种潜在的抗GC化合物,可以通过靶向LKB1-SIK2/3-PARD3信号轴来抑制GC生长和EMT特性。Erianin和5-FU的协同作用提示了用于GC治疗的有希望的治疗策略。
    Erianin, a bibenzyl compound found in dendrobium extract, has demonstrated broad anticancer activity. However, its mechanism of action in gastric cancer (GC) remains poorly understood. LKB1 is a tumor-suppressor gene, and its mutation is an important driver of various cancers. Yet some studies have reported contradictory findings. In this study, we combined bioinformatics and in vitro and in vivo experiments to investigate the effect and potential mechanism of Erianin in the treatment of GC. The results show that LKB1 was highly expressed in patients\' tumor tissues and GC cells, and it was associated with poor patient prognosis. Erianin could promote GC cell apoptosis and inhibit the scratch repair, migration, invasion, and epithelial-mesenchymal transition (EMT) characteristics. Erianin dose-dependently inhibited the expression of LKB1, SIK2, SIK3, and PARD3 but had no significant effect on SIK1. Erianin also inhibited tumor growth in CDX mice model. Unexpectedly, 5-FU also exhibited a certain inhibitory effect on LKB1. The combination of Erianin and 5-FU significantly improved the anti-tumor efficacy of 5-FU in the growth of GC cells and xenograft mouse models. In summary, Erianin is a potential anti-GC compound that can inhibit GC growth and EMT properties by targeting the LKB1-SIK2/3-PARD3-signaling axis. The synergistic effect of Erianin and 5-FU suggests a promising therapeutic strategy for GC treatment.
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  • 文章类型: Journal Article
    脂质代谢紊乱是几种严重影响公众健康的慢性代谢性疾病的主要原因。Salusin-α,血管活性肽,已被证明可以减轻脂质代谢紊乱,尽管其作用机制尚未报道。为了研究Salusin-α对脂质代谢的影响和潜在机制,使用慢病毒载体过表达或敲低Salusin-α。慢病毒转染HepG2细胞后,游离脂肪酸(FFA)诱导肝细胞脂肪变性。使用油红O染色并通过测量几种生化指标来评估脂质积累的程度。随后,生物信息学用于分析可能参与脂质代谢紊乱的信号通路。最后,半定量PCR和免疫印迹用于验证肝激酶B1(LKB1)/AMPK通路的参与。化合物C,AMPK的抑制剂,被用来进一步证实这种机制的参与。结果表明,Salusin-α显着减弱脂质积累,炎症和氧化应激。此外,Salusin-α增加了LKB1和AMPK的水平,抑制固醇调节元件结合蛋白-1c的表达,脂肪酸合成酶和乙酰辅酶A羧化酶。化合物C的添加消除了Salusin-α介导的AMPK对下游信号分子的调节。总之,Salusin-α的过表达激活了LKB1/AMPK途径,这反过来又抑制了HepG2细胞中的脂质积累。这提供了对Salusin‑α改善脂质代谢紊乱的潜在机制的见解,同时确定了潜在的治疗靶标。
    Lipid metabolism disorders are a major cause of several chronic metabolic diseases which seriously affect public health. Salusin‑α, a vasoactive peptide, has been shown to attenuate lipid metabolism disorders, although its mechanism of action has not been reported. To investigate the effects and potential mechanisms of Salusin‑α on lipid metabolism, Salusin‑α was overexpressed or knocked down using lentiviral vectors. Hepatocyte steatosis was induced by free fatty acid (FFA) after lentiviral transfection into HepG2 cells. The degree of lipid accumulation was assessed using Oil Red O staining and by measuring several biochemical indices. Subsequently, bioinformatics was used to analyze the signaling pathways that may have been involved in lipid metabolism disorders. Finally, semi‑quantitative PCR and western blotting were used to verify the involvement of the liver kinase B1 (LKB1)/AMPK pathway. Compound C, an inhibitor of AMPK, was used to confirm this mechanism\'s involvement further. The results showed that Salusin‑α significantly attenuated lipid accumulation, inflammation and oxidative stress. In addition, Salusin‑α increased the levels of LKB1 and AMPK, which inhibited the expression of sterol regulatory element binding protein‑1c, fatty acid synthase and acetyl‑CoA carboxylase. The addition of Compound C abrogated the Salusin‑α‑mediated regulation of AMPK on downstream signaling molecules. In summary, overexpression of Salusin‑α activated the LKB1/AMPK pathway, which in turn inhibited lipid accumulation in HepG2 cells. This provides insights into the potential mechanism underlying the mechanism by which Salusin‑α ameliorates lipid metabolism disorders while identifying a potential therapeutic target.
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  • 文章类型: Journal Article
    尽管证实了LKB1在抑制肺癌进展中的作用,它对细胞衰老的确切影响是未知的。本研究旨在阐明LKB1在抑制肺腺癌端粒酶活性中的作用及机制。结果表明,LKB1在体外或体内均可诱导细胞衰老和凋亡。LKB1在LKB1缺陷型A549细胞中的过表达通过调节端粒酶逆转录酶(TERT)的表达而导致端粒酶活性的抑制和端粒功能障碍的诱导。作为转录因子,LKB1过表达后Sp1介导TERT抑制。LKB1诱导乳酸产生并抑制组蛋白H4(Lys8)和H4(Lys16)的乳酸化,这进一步改变了Sp1相关的转录活性。端粒酶抑制剂BIBR1532有助于实现传统化疗药物联合糖酵解抑制剂2DG的最佳疗效。这些数据揭示了LKB1通过依赖乳酸化的转录抑制调节端粒酶活性的新机制。因此,为LKB1介导的衰老在肺腺癌中的作用提供了新的见解。我们的研究为创造新的癌症治疗方法开辟了新的可能性。
    Despite the confirmed role of LKB1 in suppressing lung cancer progression, its precise effect on cellular senescence is unknown. The aim of this research was to clarify the role and mechanism of LKB1 in restraining telomerase activity in lung adenocarcinoma. The results showed that LKB1 induced cellular senescence and apoptosis either in vitro or in vivo. Overexpression of LKB1 in LKB1-deficient A549 cells led to the inhibition of telomerase activity and the induction of telomere dysfunction by regulating telomerase reverse transcriptase (TERT) expression in terms of transcription. As a transcription factor, Sp1 mediated TERT inhibition after LKB1 overexpression. LKB1 induced lactate production and inhibited histone H4 (Lys8) and H4 (Lys16) lactylation, which further altered Sp1-related transcriptional activity. The telomerase inhibitor BIBR1532 was beneficial for achieving the optimum curative effect of traditional chemotherapeutic drugs accompanied by the glycolysis inhibitor 2DG. These data reveal a new mechanism by which LKB1 regulates telomerase activity through lactylation-dependent transcriptional inhibition, and therefore, provide new insights into the effects of LKB1-mediated senescence in lung adenocarcinoma. Our research has opened up new possibilities for the creation of new cancer treatments.
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  • 文章类型: Journal Article
    臭氧(O3)是直接威胁呼吸系统的主要空气污染物,肺脂肪酸代谢紊乱是肺部炎症性疾病的重要分子事件。肝激酶B1(LKB1)和核苷酸结合域富含亮氨酸的重复蛋白3(NLRP3)炎症小体不仅调节炎症,还与脂肪酸代谢密切相关。然而,LKB1和NLRP3炎性体在肺脂肪酸代谢中的作用及机制,这可能会导致臭氧引起的肺部炎症,仍不清楚,缺乏预防O3诱导的肺部炎症损伤的有效策略。为了探索这些,小鼠暴露于1.00ppmO3(3小时/天,5days),肺部炎症是由气道高反应性决定的,组织病理学检查,支气管肺泡灌洗液(BALF)中的总细胞和细胞因子。采用靶向脂肪酸代谢组学技术检测肺组织中、长脂肪酸。然后,利用LKB1过表达腺病毒和NLRP3基因敲除(NLRP3-/-)小鼠探讨O3诱导肺脂肪酸代谢紊乱的机制。结果表明,O3暴露引起肺部炎症损伤和肺中长链脂肪酸代谢紊乱,尤其是降低二高-γ-亚麻酸(DGLA)。同时,LKB1表达降低,O3暴露后,小鼠肺部的NLRP3炎性体被激活。此外,LKB1过表达减轻O3诱导的肺部炎症并抑制NLRP3炎性体的活化。我们发现,与O3暴露后的宽型小鼠相比,NLRP3-/-小鼠的肺脂肪酸代谢紊乱得到了改善。此外,在暴露于O3之前气管内施用DGLA可显着减轻O3诱导的肺部炎症损伤。一起来看,这些发现表明脂肪酸代谢紊乱与O3诱导的肺部炎症有关,受LKB1介导的NLRP3通路调节,DGLA补充剂可能是改善臭氧相关肺部炎症损伤的有效预防策略。
    Ozone (O3) is a major air pollutant that directly threatens the respiratory system, lung fatty acid metabolism disorder is an important molecular event in pulmonary inflammatory diseases. Liver kinase B1 (LKB1) and nucleotide-binding domain leucine-rich repeat-containing protein 3 (NLRP3) inflammasome not only regulate inflammation, but also have close relationship with fatty acid metabolism. However, the role and mechanism of LKB1 and NLRP3 inflammasome in lung fatty acid metabolism, which may contribute to ozone-induced lung inflammation, remain unclear, and effective strategy for preventing O3-induced pulmonary inflammatory injury is lacking. To explore these, mice were exposed to 1.00 ppm O3 (3 h/d, 5 days), and pulmonary inflammation was determined by airway hyperresponsiveness, histopathological examination, total cells and cytokines in bronchoalveolar lavage fluid (BALF). Targeted fatty acids metabolomics was used to detect medium and long fatty acid in lung tissue. Then, using LKB1-overexpressing adenovirus and NLRP3 knockout (NLRP3-/-) mice to explore the mechanism of O3-induced lung fatty acid metabolism disorder. Results demonstrated that O3 exposure caused pulmonary inflammatory injury and lung medium and long chain fatty acids metabolism disorder, especially decreased dihomo-γ-linolenic acid (DGLA). Meanwhile, LKB1 expression was decreased, and NLRP3 inflammasome was activated in lung of mice after O3 exposure. Additionally, LKB1 overexpression alleviated O3-induced lung inflammation and inhibited the activation of NLRP3 inflammasome. And we found that pulmonary fatty acid metabolism disorder was ameliorated of NLRP3 -/- mice compared with those in wide type mice after O3 exposure. Furthermore, administrating DGLA intratracheally prior to O3 exposure significantly attenuated O3-induced pulmonary inflammatory injury. Taken together, these findings suggest that fatty acids metabolism disorder is involved in O3-induced pulmonary inflammation, which is regulated by LKB1-mediated NLRP3 pathway, DGLA supplement could be a useful preventive strategy to ameliorate ozone-associated lung inflammatory injury.
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  • 文章类型: Journal Article
    社会记忆是区分熟悉和未知物种的能力。它是社会认知的重要组成部分,因此对于建立社会关系至关重要。尽管社会记忆编码背后的神经回路机制已经得到了很好的研究,很少关注社会记忆处理的调节机制。多巴胺能系统,起源于中脑腹侧被盖区(VTA),是认知功能的关键调节剂。本研究旨在阐明其在调节社会记忆中的作用,并探讨其可能的分子机制。这里,我们表明,VTA多巴胺(DA)神经元的激活是形成所必需的,但不是检索,社会记忆。在社交互动之前抑制VTADA神经元,但不是在社交互动后24小时,第二天严重损害了社会歧视。此外,我们表明,VTADA神经元的激活受丝氨酸/苏氨酸蛋白激酶肝激酶B1(Lkb1)的调节。VTADA神经元中Lkb1的缺失降低了多巴胺能神经元爆发的频率。此外,Lkb1在调节社会行为中起着重要作用。成年小鼠VTA中Lkb1的遗传和病毒介导的缺失均损害了社会记忆,随后减弱了社会熟悉。总之,我们的研究结果提供了将社会记忆形成与小鼠VTADA神经元激活联系起来的直接证据,并说明了Lkb1在调节VTADA神经元功能中的关键作用。
    Social memory is the ability to discriminate between familiar and unknown conspecifics. It is an important component of social cognition and is therefore essential for the establishment of social relationships. Although the neural circuit mechanisms underlying social memory encoding have been well investigated, little focus has been placed on the regulatory mechanisms of social memory processing. The dopaminergic system, originating from the midbrain ventral tegmental area (VTA), is a key modulator of cognitive function. This study aimed to illustrate its role in modulating social memory and explore the possible molecular mechanisms. Here, we show that the activation of VTA dopamine (DA) neurons is required for the formation, but not the retrieval, of social memory. Inhibition of VTA DA neurons before social interaction, but not 24 h after social interaction, significantly impaired social discrimination the following day. In addition, we showed that the activation of VTA DA neurons was regulated by the serine/threonine protein kinase liver kinase B1 (Lkb1). Deletion of Lkb1 in VTA DA neurons reduced the frequency of burst firing of dopaminergic neurons. Furthermore, Lkb1 plays an important role in regulating social behaviors. Both genetic and virus-mediated deletions of Lkb1 in the VTA of adult mice impaired social memory and subsequently attenuated social familiarization. Altogether, our results provide direct evidence linking social memory formation to the activation of VTA DA neurons in mice and illustrate the crucial role of Lkb1 in regulating VTA DA neuron function.
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  • 文章类型: Journal Article
    背景:肥胖与给患者和社会带来巨大负担的多种代谢紊乱有关。白色脂肪组织(WAT)中的“褐变”现象已成为对抗代谢紊乱的有希望的治疗策略。然而,尽管抗糖尿病药物达格列净(DAPA)被认为可以促进“褐变”,“这种具体机制以前还不清楚。
    方法:在本研究中,用C57BL/6J雄性小鼠通过高脂饮食建立肥胖模型,和3T3-L1细胞用于诱导成熟脂肪细胞,并通过体内外实验结合探讨DAPA在“褐变”中的作用和机制。
    结果:结果表明,DAPA促进了WAT\“褐变\”并改善了代谢紊乱。此外,我们发现DAPA通过成纤维细胞生长因子受体1-肝激酶B1-磷酸腺苷活化蛋白激酶信号通路激活“褐变”。
    结论:这些发现为DAPA通过促进白色脂肪组织褐变治疗肥胖提供了合理的依据。
    BACKGROUND: Obesity is associated with a wide variety of metabolic disorders that impose significant burdens on patients and society. The \"browning\" phenomenon in white adipose tissue (WAT) has emerged as a promising therapeutic strategy to combat metabolic disturbances. However, though the anti-diabetic drug dapagliflozin (DAPA) is thought to promote \"browning,\" the specific mechanism of this was previously unclear.
    METHODS: In this study, C57BL/6 J male mice were used to establish an obesity model by high-fat diet feeding, and 3T3-L1 cells were used to induce mature adipocytes and to explore the role and mechanism of DAPA in \"browning\" through a combination of in vitro and in vivo experiments.
    RESULTS: The results show that DAPA promotes WAT \"browning\" and improves metabolic disorders. Furthermore, we discovered that DAPA activated \"browning\" through the fibroblast growth factor receptors 1-liver kinase B1-adenosine monophosphate-activated protein kinase signaling pathway.
    CONCLUSIONS: These findings provide a rational basis for the use of DAPA in treating obesity by promoting the browning of white adipose tissue.
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  • 文章类型: Journal Article
    γδT细胞在免疫监视中起着至关重要的作用,并且是先天免疫和适应性免疫之间的桥梁。然而,γδT细胞发育和功能的代谢需求和调节仍然知之甚少。在这项研究中,我们研究了肝激酶B1(Lkb1)的作用,丝氨酸/苏氨酸激酶,将细胞代谢与细胞生长和增殖联系起来,在γδT细胞生物学中。我们的发现表明,Lkb1不仅参与调节γδT谱系承诺,而且在γδT细胞效应子功能中起关键作用。具体来说,Lkb1的T细胞特异性缺失导致胸腺细胞发育受损,胸腺和外周淋巴组织中γδT细胞亚群发生明显变化。值得注意的是,Lkb1的缺失抑制了Vγ1和Vγ4γδT细胞的表达,促进产生IL-17的Vγ6γδT细胞的成熟,并导致致命的自身免疫性肝炎(AIH)的发生。值得注意的是,清除γδT细胞或阻断IL-17可显着减弱AIH。机械上,Lkb1缺乏破坏了代谢稳态和AMPK活性,伴随着mTORC1激活的增加,从而引起γδT细胞的过度活化并增强凋亡。有趣的是,在Lkb1缺陷小鼠中,AMPK的激活或mTORC1信号传导的抑制可有效抑制IL-17水平并减弱AIH.我们的发现强调了Lkb1在维持γδT细胞稳态和预防IL-17介导的自身免疫性疾病中的关键作用。为控制胸腺γδT细胞亚群确定和功能分化的代谢程序提供新的见解。
    γδ T cells play a crucial role in immune surveillance and serve as a bridge between innate and adaptive immunity. However, the metabolic requirements and regulation of γδ T-cell development and function remain poorly understood. In this study, we investigated the role of liver kinase B1 (Lkb1), a serine/threonine kinase that links cellular metabolism with cell growth and proliferation, in γδ T-cell biology. Our findings demonstrate that Lkb1 is not only involved in regulating γδ T lineage commitment but also plays a critical role in γδ T-cell effector function. Specifically, T-cell-specific deletion of Lkb1 resulted in impaired thymocyte development and distinct alterations in γδ T-cell subsets in both the thymus and peripheral lymphoid tissues. Notably, loss of Lkb1 inhibited the commitment of Vγ1 and Vγ4 γδ T cells, promoted the maturation of IL-17-producing Vγ6 γδ T cells, and led to the occurrence of fatal autoimmune hepatitis (AIH). Notably, clearance of γδ T cells or blockade of IL-17 significantly attenuated AIH. Mechanistically, Lkb1 deficiency disrupted metabolic homeostasis and AMPK activity, accompanied by increased mTORC1 activation, thereby causing overactivation of γδ T cells and enhanced apoptosis. Interestingly, activation of AMPK or suppression of mTORC1 signaling effectively inhibited IL-17 levels and attenuated AIH in Lkb1-deficient mice. Our findings highlight the pivotal role of Lkb1 in maintaining the homeostasis of γδ T cells and preventing IL-17-mediated autoimmune diseases, providing new insights into the metabolic programs governing the subset determination and functional differentiation of thymic γδ T cells.
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  • 文章类型: Journal Article
    冬凌草甲素是冬凌草的主要生物活性成分,其抗癌活性已在多种癌症中被报道。然而,冬凌草甲素在喉癌中的分子机制尚不清楚。在本研究中,通过改良的MTT法初步检测冬凌草甲素对喉癌Hep-2和TU212细胞系的细胞毒性作用。结果表明,冬凌草甲素对喉癌Hep-2和TU212细胞具有剂量依赖性的抗增殖作用。接下来,通过伤口愈合试验和transwell试验,我们发现冬凌草甲素显著抑制人喉癌Hep-2和TU212细胞系的迁移和侵袭。随后,实时定量PCR和蛋白质印迹分析的结果证实,冬凌草甲素在mRNA和蛋白质水平上以浓度依赖性方式上调E-cadherin的表达,而N-cadherin的表达。此外,冬凌草甲素治疗后,肝激酶B1(p-LKB1)和AMP激活蛋白激酶(p-AMPK)的磷酸化水平也升高.为了进一步验证LKB1/AMPK信号通路在喉癌中的作用,通过质粒转染构建LKB1的过表达。数据表明,LKB1的过表达可以进一步增强冬凌草甲素介导的E-cadherin水平的增加和N-cadherin水平的降低。此外,AMPK抑制剂化合物C可以逆转冬凌草甲素对喉癌的抗转移作用,并拮抗EMT表达。相比之下,AMPK激活剂AICAR呈现相反的效果。总之,我们的研究表明,冬凌草甲素可以通过正向调节LKB1/AMPK信号通路显著逆转喉癌的上皮间质转化,这表明冬凌草甲素可能是未来治疗喉癌的潜在候选者。
    Oridonin is the main bioactive component of Rabdosia rubescens, and its anticancer activity has been reported in a variety of cancers. However, the molecular mechanism of oridonin in laryngeal carcinoma remains unclear. In the present study, the cytotoxic effect of oridonin on laryngeal carcinoma Hep-2 and TU212 cell lines were initially detected by modified MTT assay. The results showed that oridonin had a dose-dependent anti-proliferative effect on laryngeal carcinoma Hep-2 and TU212 cells. Next, we found that oridonin significantly inhibited the migration and invasion of human laryngeal carcinoma Hep-2 and TU212 cell lines by wound healing assay and transwell assay. Subsequently, the results of quantitative real-time PCR assay and western blotting assay confirmed that oridonin upregulated the expression of E-cadherin while downregulated the expression of N-cadherin in a concentration-dependent manner at mRNA and protein levels. In addition, phosphorylation levels of liver kinase B1 (p-LKB1) and AMP-activated protein kinase (p-AMPK) were also elevated upon oridonin treatment. To further verify the role of LKB1/AMPK signaling pathway in laryngeal carcinoma, overexpression of LKB1 was constructed by plasmid transfection. The data exhibited that overexpression of LKB1 could further reinforce the increase of E-cadherin level and decrease of N-cadherin level mediated by oridonin. Additionally, AMPK inhibitor compound C could reverse anti-metastatic effect of oridonin on laryngeal carcinoma, and antagonise EMT expression. In contrast, AMPK activator AICAR presented the opposite effect. In conclusion, our study revealed that oridonin could remarkably reverse the epithelial-mesenchymal transition of laryngeal carcinoma by positively regulating LKB1/AMPK signaling pathway, which suggested that oridonin may be a potential candidate for the treatment of laryngeal carcinoma in the future.
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