Patched-1 Receptor

Patched - 1 受体
  • 文章类型: Journal Article
    髓母细胞瘤(MB)是儿童最常见的恶性脑肿瘤,分为三个主要亚组。Sonichedgehog(SHH)亚组占所有MB病例的30%,并且根据TP53状态具有显着的生存差异。这里,我们描述了一个SHHMB的斑马鱼模型,使用CRISPR创建突变ptch1,人类SHHMB的主要遗传驱动因子。在这些动物中,肿瘤在小脑中迅速出现,并通过组织学和比较细胞基因组学与人类SHHMB相似。类似于人类患者,ptch1和tp53缺失的MB肿瘤具有侵袭性肿瘤组织学和显著较差的生存结果。ptch1-crispantMB模型的简单性和可扩展性使其高度适合于基于CRISPR的基因组编辑筛选,以识别体内SHHMB肿瘤形成所需的基因。在这里,我们确定了编码Grk3激酶的基因作为一个这样的靶标。
    Medulloblastoma (MB) is the most common malignant brain tumor in children and is stratified into three major subgroups. The Sonic hedgehog (SHH) subgroup represents ∼30% of all MB cases and has significant survival disparity depending upon TP53 status. Here, we describe a zebrafish model of SHH MB using CRISPR to create mutant ptch1, the primary genetic driver of human SHH MB. In these animals, tumors rapidly arise in the cerebellum and resemble human SHH MB by histology and comparative onco-genomics. Similar to human patients, MB tumors with loss of both ptch1 and tp53 have aggressive tumor histology and significantly worse survival outcomes. The simplicity and scalability of the ptch1-crispant MB model makes it highly amenable to CRISPR-based genome-editing screens to identify genes required for SHH MB tumor formation in vivo, and here we identify the gene encoding Grk3 kinase as one such target.
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  • 文章类型: Journal Article
    目的:除了视网膜母细胞瘤基因的作用外,与眼科肿瘤患者预后不良相关的基因组事件尚不清楚.
    方法:我们回顾性分析了48例六种类型的眼科肿瘤患者。我们使用联合外显子组和转录组分析在这些患者中搜索高频突变基因和易感基因。
    结果:我们确定了四个明显的致病基因(TP53,PTCH1,SMO,BAP1).易感性基因分析确定热点基因,包括RUNX1、APC、IDH2和BRCA2,高频基因分析确定了几个基因,包括TP53,TTN,MUC16转录组分析确定了5868个差异表达基因,其中TOP2A和ZWINT在所有样品中上调,而CFD,伊兰,HBA1和HBB下调。《京都基因百科全书》和基因组富集分析表明,癌症信号通路中的磷酸肌醇3-激酶(PI3K)-Akt和转录失调可能与眼科肿瘤发生有关。
    结论:TP53明显参与眼科肿瘤发生,尤其是基底细胞癌,PI3K-Akt信号通路可能是参与眼科肿瘤发生的重要通路。RUNX1,SMO,TOP2A,ZWINT也很可能参与眼科肿瘤发生,但是需要进一步的功能实验来验证这些基因在调节肿瘤发生中的机制。
    OBJECTIVE: Apart from the role of the retinoblastoma gene, the genomic events associated with poor outcomes in patients with ophthalmic tumors are poorly understood.
    METHODS: We retrospectively analyzed 48 patients with six types of ophthalmic tumors. We searched for high-frequency mutated genes and susceptibility genes in these patients using combined exome and transcriptome analysis.
    RESULTS: We identified four clearly causative genes (TP53, PTCH1, SMO, BAP1). Susceptibility gene analysis identified hotspot genes, including RUNX1, APC, IDH2, and BRCA2, and high-frequency gene analysis identified several genes, including TP53, TTN, and MUC16. Transcriptome analysis identified 5868 differentially expressed genes, of which TOP2A and ZWINT were upregulated in all samples, while CFD, ELANE, HBA1, and HBB were downregulated. Kyoto Encyclopedia of Genes and Genomes enrichment analysis indicated that the phosphoinositide 3-kinase (PI3K)-Akt and Transcriptional misregulation in cancer signaling pathways may be involved in ophthalmic tumorigenesis.
    CONCLUSIONS: TP53 is clearly involved in ophthalmic tumorigenesis, especially in basal cell carcinoma, and the PI3K-Akt signaling pathway may be an essential pathway involved in ophthalmic tumorigenesis. RUNX1, SMO, TOP2A, and ZWINT are also highly likely to be involved in ophthalmic tumorigenesis, but further functional experiments are needed to verify the mechanisms of these genes in regulating tumorigenesis.
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  • 文章类型: Journal Article
    由于未知的诱发继发性癌症的风险,目前用于小儿癌症的碳离子放射疗法(CIRT)受到限制。Ptch1+/-小鼠的髓母细胞瘤为辐射诱导的致癌作用提供了独特的实验系统,根据影响野生型Ptch1等位基因的杂合性缺失(LOH)的特征,将肿瘤分为自发性和辐射诱导的亚型。本研究旨在探讨Ptch1+/-小鼠的致癌作用,以及它的年龄依赖性,低线性能量转移(LET,13keV/µm)碳离子,在治疗期间肿瘤前方的正常组织暴露于其中。我们在出生后第1、4或10天用290MeV/u碳离子(0.05-0.5Gy;LET,13keV/µm)并监测它们的髓母细胞瘤发展。研究了13号染色体(Ptch1所在的位置)上七个遗传标记的杂合性缺失,以对肿瘤进行分类。碳离子暴露在P1时最有效地诱导髓母细胞瘤。肿瘤的LOH模式为端粒或间质,后者几乎只发生在受辐照的群体中,允许使用间质LOH作为辐射诱导肿瘤的生物标志物。辐射诱导的肿瘤在狭窄的年龄窗口中发展(在P1处最强烈,在P4处仅中度,在P10处抑制了肿瘤发生)。使用137Cs伽马射线使用以前的结果计算,在P1和4点暴露时,辐射诱导肿瘤的相对生物学有效性(RBE)值分别为4.1(3.4,4.8)和4.3(3.3,5.2)(平均值和95%置信区间).因此,用于Ptch1+/-小鼠髓母细胞瘤诱导的碳离子RBE高于一般公认的1-2细胞杀伤RBE,染色体畸变,和皮肤反应。
    Carbon ion radiotherapy (CIRT) for pediatric cancer is currently limited because of the unknown risk of induction of secondary cancers. Medulloblastoma of Ptch1+/- mice offers a unique experimental system for radiation-induced carcinogenesis, in which tumors are classified into spontaneous and radiation-induced subtypes based on their features of loss of heterozygosity (LOH) that affect the wild-type Ptch1 allele. The present study aims to investigate in young Ptch1+/- mice the carcinogenic effect, and its age dependence, of the low-linear energy transfer (LET, ∼13 keV/µm) carbon ions, to which normal tissues in front of the tumor are exposed during therapy. We irradiated Ptch1+/- mice at postnatal day (P) 1, 4, or 10 with 290 MeV/u carbon ions (0.05-0.5 Gy; LET, 13 keV/µm) and monitored them for medulloblastoma development. Loss of heterozygosity of seven genetic markers on chromosome 13 (where Ptch1 resides) was studied to classify the tumors. Carbon ion exposure induced medulloblastoma most effectively at P1. The LOH patterns of tumors were either telomeric or interstitial, the latter occurring almost exclusively in the irradiated groups, allowing the use of interstitial LOH as a biomarker of radiation-induced tumors. Radiation-induced tumors developed during a narrow age window (most strongly at P1 and only moderately at P4, with suppressed tumorigenesis at P10). Calculated using previous results using 137Cs gamma rays, the values for relative biological effectiveness (RBE) regarding radiation-induced tumors were 4.1 (3.4, 4.8) and 4.3 (3.3, 5.2) (mean and 95% confidence interval) for exposure at P1 and 4, respectively. Thus, the RBE of carbon ions for medulloblastoma induction in Ptch1+/- mice was higher than the generally recognized RBE of 1-2 for cell killing, chromosome aberrations, and skin reactions.
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  • 文章类型: Journal Article
    先天性肺畸形在出生时的严重形式是致命的。预防和早期干预这些出生缺陷需要全面了解肺发育的分子机制。我们发现,inturn(Intu)的损失,纤毛和平面极性效应基因,严重破坏小鼠胚胎肺的生长和分支形态发生。与我们之前的结果表明Intu在纤毛发生和刺猬(Hh)信号传导中的重要作用一致,我们发现肺上皮和间充质组织中的原发性纤毛数量大大减少。我们还发现Gli1和Ptch1的表达显着降低,Hh信号的直接靶标,提示Intu突变肺中纤毛依赖性Hh信号的破坏。Hh通路激活剂的激动剂,平滑,在外植野生型中增加Hh靶基因表达和肾小管发生,但不是Intu突变体,肺,提示Intu突变体肺形态发生缺陷潜在的Hh信号应答受损。此外,去除Gli2和Intu完全消除了肺的分支形态发生,强烈支持Intu通过纤毛依赖性Hh信号传导调节肺生长和模式的机制。此外,转录组学分析在Intu突变肺中鉴定出大约200个差异表达基因(DEGs),包括已知的Hh靶基因Gli1、Ptch1/2和Hip。参与肌肉分化和功能的基因在DEGs中高度富集,符合Hh信号在气道平滑肌分化中的重要作用。此外,我们发现,在Intu突变体中,左肺和右肺之间的基因表达差异减小,表明Intu在小鼠肺的不对称生长和模式中的重要作用。
    Congenital lung malformations are fatal at birth in their severe forms. Prevention and early intervention of these birth defects require a comprehensive understanding of the molecular mechanisms of lung development. We find that the loss of inturned (Intu), a cilia and planar polarity effector gene, severely disrupts growth and branching morphogenesis of the mouse embryonic lungs. Consistent with our previous results indicating an important role for Intu in ciliogenesis and hedgehog (Hh) signaling, we find greatly reduced number of primary cilia in both the epithelial and mesenchymal tissues of the lungs. We also find significantly reduced expression of Gli1 and Ptch1, direct targets of Hh signaling, suggesting disruption of cilia-dependent Hh signaling in Intu mutant lungs. An agonist of the Hh pathway activator, smoothened, increases Hh target gene expression and tubulogenesis in explanted wild type, but not Intu mutant, lungs, suggesting impaired Hh signaling response underlying lung morphogenetic defects in Intu mutants. Furthermore, removing both Gli2 and Intu completely abolishes branching morphogenesis of the lung, strongly supporting a mechanism by which Intu regulates lung growth and patterning through cilia-dependent Hh signaling. Moreover, a transcriptomics analysis identifies around 200 differentially expressed genes (DEGs) in Intu mutant lungs, including known Hh target genes Gli1, Ptch1/2 and Hhip. Genes involved in muscle differentiation and function are highly enriched among the DEGs, consistent with an important role of Hh signaling in airway smooth muscle differentiation. In addition, we find that the difference in gene expression between the left and right lungs diminishes in Intu mutants, suggesting an important role of Intu in asymmetrical growth and patterning of the mouse lungs.
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  • 文章类型: Journal Article
    背景:口腔癌对印度的公共卫生构成了重大负担,发病率和死亡率较高。尽管治疗方式有了进步,由于局部复发和淋巴结转移等因素,预后仍然较差,可能受到癌症干细胞的影响。在涉及CSC调节的信号通路中,Hedgehog通路在口腔鳞状细胞癌(OSCC)中起着至关重要的作用。
    方法:收集97例OSCC患者的组织样本并进行RNA分离,cDNA合成和定量实时PCR分析PTCH1和SMO表达。通过免疫组织化学评估蛋白质表达。临床病理参数与基因和蛋白质表达相关。统计分析包括皮尔逊卡方检验,相关系数测试,Kaplan-Meier生存分析和ROC曲线分析。
    结果:PTCH1表达与淋巴渗透(p=0.002)和肿瘤分期(p=0.002)相关,而SMO的表达与淋巴结状态(p=0.034)和肿瘤分期(p=0.021)相关。PTCH1基因表达与淋巴结状态相关(p=0.024)。高PTCH1基因表达与舌癌患者生存期缩短相关。ROC曲线分析表明PTCH1和SMO基因和胞质SMO表达在区分恶性组织与邻近正常组织中的诊断潜力。
    结论:PTCH1和SMO在口腔癌进展中起关键作用,与肿瘤分期和转移潜力相关。尽管不直接影响总生存率,PTCH1在特定解剖部位的表达提示其预后意义。PTCH1和SMO具有诊断潜力,表明它们在口腔癌管理和治疗策略中作为分子标志物的实用性。
    BACKGROUND: Oral cancer poses a significant burden on public health in India, with higher incidence and mortality rates. Despite advancements in treatment modalities, prognosis remains poor due to factors such as localized recurrence and lymph node metastasis, potentially influenced by cancer stem cells. Among signaling pathways implicated in CSC regulation, the Hedgehog pathway plays a crucial role in oral squamous cell carcinoma (OSCC).
    METHODS: 97 OSCC patients\' tissue samples were collected and subjected to RNA isolation, cDNA synthesis and quantitative real-time PCR to analyze PTCH1 and SMO expression. Protein expression was assessed through immunohistochemistry. Clinicopathological parameters were correlated with gene and protein expression. Statistical analysis included Pearson chi-square tests, co-relation co-efficient tests, Kaplan-Meier survival analysis and ROC curve analysis.
    RESULTS: PTCH1 expression correlated with lymphatic permeation (p = 0.002) and tumor stage (p = 0.002), while SMO expression correlated with lymph node status (p = 0.034) and tumor stage (p = 0.021). PTCH1 gene expression correlated with lymph node status (p = 0.024). High PTCH1 gene expression was associated with shorter survival in tongue cancer patients. ROC curve analysis indicated diagnostic potential for PTCH1 and SMO gene and cytoplasmic SMO expression in distinguishing malignant tissues from adjacent normal tissues.
    CONCLUSIONS: PTCH1 and SMO play a crucial role in oral cancer progression, correlating with tumor stages and metastatic potential. Despite not directly influencing overall survival, PTCH1 expression at specific anatomical sites hints at its prognostic implications. PTCH1 and SMO exhibit diagnostic potential, suggesting their utility as molecular markers in oral cancer management and therapeutic strategies.
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  • 文章类型: Journal Article
    Hedgehog(HH)通路对胚胎发育至关重要,和成人稳态。它的失调与多种疾病有关。用于研究哺乳动物中HH信号调节的现有细胞模型并未完全概括该途径的复杂性。在这里,我们表明脊髓类器官(SCO)可用于定量研究HH途径的活性。在上海合作组织成立期间,不同类别的神经祖细胞(NPC)的规格取决于HH信号的强度,反映神经管发育过程中发生的过程。通过评估这些不同子组中NPC的数量,我们能够对HH通路的激活水平进行分类和量化.我们通过测量突变HH受体PTCH1的作用以及HH激动剂和拮抗剂对NPC规格的影响来验证该系统。SCO代表了量化HH信号传导并研究遗传和化学线索在HH途径调节中的贡献的可获得且可靠的体外工具。
    The Hedgehog (HH) pathway is crucial for embryonic development, and adult homeostasis. Its dysregulation is implicated in multiple diseases. Existing cellular models used to study HH signal regulation in mammals do not fully recapitulate the complexity of the pathway. Here we show that Spinal Cord Organoids (SCOs) can be applied to quantitively study the activity of the HH pathway. During SCO formation, the specification of different categories of neural progenitors (NPC) depends on the intensity of the HH signal, mirroring the process that occurs during neural tube development. By assessing the number of NPCs within these distinct subgroups, we are able to categorize and quantify the activation level of the HH pathway. We validate this system by measuring the effects of mutating the HH receptor PTCH1 and the impact of HH agonists and antagonists on NPC specification. SCOs represent an accessible and reliable in-vitro tool to quantify HH signaling and investigate the contribution of genetic and chemical cues in the HH pathway regulation.
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  • 文章类型: Journal Article
    背景:胶质瘤干细胞(GSC),以它们的治疗抗性而闻名,在多形性胶质母细胞瘤(GBM)的治疗无效中起着重要作用。TRIM37是三方基序(TRIM)蛋白家族的成员,最初与一种罕见的生长障碍有关,已被公认为其致癌作用。然而,TRIM37调节神经胶质瘤和GSCs肿瘤生长的机制尚不清楚.
    方法:对于体外实验,通过蛋白质印迹法测量基因表达,RT-qPCR,和免疫荧光。CCK-8检测细胞活力,流式细胞术检测细胞凋亡。Zeste同源物2的增强子(EZH2)和TRIM37之间的相互作用通过免疫共沉淀(Co-IP)验证。使用双荧光素酶报告基因测定和染色质免疫沉淀(ChIP)验证EZH2与PTCH1启动子之间的相互作用。对于体内实验,使用原位植入的神经胶质瘤小鼠模型验证肿瘤生长.
    结果:与匹配的非GSC相比,TRIM37在GSC中的表达更高。TRIM37敲低促进细胞凋亡,GSC的干性降低,并减少裸鼠GSCs异种移植物中的肿瘤生长。TRIM37和EZH2共同定位在细胞核中并彼此相互作用。TRIM37敲低或EZH2抑制下调与SonicHedgehog(SHH)途径相关的蛋白质表达。EZH2表观下调PTCH1以激活GSC中的SHH途径。
    结论:TRIM37通过与EZH2的相互作用维持GSCs的细胞生长和干性。EZH2通过下调SHH信号通路抑制因子PTCH1的表达激活SHH干细胞信号通路。我们的研究结果表明,TRIM37可能是GBM的潜在治疗靶点。
    BACKGROUND: Glioma stem cells (GSCs), which are known for their therapy resistance, play a substantial role in treatment inefficacy for glioblastoma multiforme (GBM). TRIM37, a member of the tripartite motif (TRIM) protein family initially linked to a rare growth disorder, has been recognized for its oncogenic role. However, the mechanism by which TRIM37 regulates tumor growth in glioma and GSCs is unclear.
    METHODS: For the in vitro experiments, gene expression was measured by western blotting, RT-qPCR, and immunofluorescence. Cell viability was detected by CCK-8, and cell apoptosis was detected by flow cytometry. The interaction between Enhancer of Zeste Homolog 2 (EZH2) and TRIM37 was verified by co-immunoprecipitation (Co-IP). The interaction between EZH2 and the PTCH1 promoter was verified using dual-luciferase reporter assay and chromatin immunoprecipitation (ChIP). For the in vivo experiments, an orthotopically implanted glioma mouse model was used to validate tumor growth.
    RESULTS: The expression of TRIM37 is higher in GSCs compared with matched non-GSCs. TRIM37 knockdown promotes apoptosis, decreased stemness in GSCs, and reduces tumor growth in GSCs xenografts of nude mice. TRIM37 and EZH2 co-localize in the nucleus and interact with each other. TRIM37 knockdown or EZH2 inhibition downregulates the protein expressions associated with the Sonic Hedgehog (SHH) pathway. EZH2 epigenetically downregulates PTCH1 to activate SHH pathway in GSCs.
    CONCLUSIONS: TRIM37 maintains the cell growth and stemness in GSCs through the interaction with EZH2. EZH2 activates SHH stem cell signaling pathway by downregulating the expression of SHH pathway suppressor PTCH1. Our findings suggest that TRIM37 may be a potential therapeutic target for GBM.
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  • 文章类型: Journal Article
    背景:SonicHedgehog(SHH)是控制组织重建的基本信号通路,干细胞生物学,和分化,并在肠道组织稳态和发育中发挥作用。SHH的失调导致HCC的发展。
    进行本研究以比较间充质干细胞(MSCs)和姜黄素对大鼠HCC实验模型中SHH分子靶标的影响。将100只大鼠平均分为以下组:对照组,HCC组,HCC组接受MSCs,HCC组接受姜黄素,HCC组接受MSCs和姜黄素治疗。进行组织病理学检查,和SHH信号传导靶基因的基因表达(SHH,PTCH1,SMOH,和GLI1)通过实时PCR在大鼠肝组织中进行评估。结果显示,SHH靶基因在HCC未治疗的大鼠组和MSC治疗组中显著上调,它们之间没有显著差异。给予姜黄素联合或不联合给予MSC导致SHH靶基因的显著下调。两组之间没有显着差异。关于肝组织的组织病理学检查,姜黄素和MSC,通过单独使用或组合使用,导致肝脏病理的显著恢复正常。
    结论:结论:SHH信号在HCC实验模型中上调。MSC不抑制HCC中上调的SHH靶基因。在给予或不给予MSC的情况下使用姜黄素导致HCC中SHH信号传导的显著下调和正常肝脏病理的显著恢复。
    BACKGROUND: Sonic Hedgehog (SHH) is a fundamental signaling pathway that controls tissue reconstruction, stem cell biology, and differentiation and has a role in gut tissue homeostasis and development. Dysregulation of SHH leads to the development of HCC.
    UNASSIGNED: The present study was conducted to compare the effects of mesenchymal stem cells (MSCs) and curcumin on SHH molecular targets in an experimental model of HCC in rats. One hundred rats were divided equally into the following groups: control group, HCC group, HCC group received MSCs, HCC group received curcumin, and HCC group received MSCs and curcumin. Histopathological examinations were performed, and gene expression of SHH signaling target genes (SHH, PTCH1, SMOH, and GLI1) was assessed by real-time PCR in rat liver tissue. Results showed that SHH target genes were significantly upregulated in HCC-untreated rat groups and in MSC-treated groups, with no significant difference between them. Administration of curcumin with or without combined administration of MSCs led to a significant down-regulation of SHH target genes, with no significant differences between both groups. As regards the histopathological examination of liver tissues, both curcumin and MSCs, either through separate use or their combined use, led to a significant restoration of normal liver pathology.
    CONCLUSIONS: In conclusion, SHH signaling is upregulated in the HCC experimental model. MSCs do not inhibit the upregulated SHH target genes in HCC. Curcumin use with or without MSCs administration led to a significant down-regulation of SHH signaling in HCC and a significant restoration of normal liver pathology.
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  • 文章类型: Journal Article
    Hedgehog(HH)通路调节前舌味觉菌状乳头(FP)和后旋(CVP)和叶状(FOP)味觉乳头的胚胎发育。HH信号传导还介导成人的味觉器官维持和再生。然而,在出生后味觉器官分化和成熟过程中,HH途径成分表达存在知识空白。重要的是,HH转录效应子GLI1、GLI2和GLI3尚未在出生后早期进行研究;HH受体PTCH1、GAS1、CDON和HHIP,需要驱动HH途径激活或拮抗,也仍未探索。使用lacZ记者小鼠模型,我们定位了HH配体SHH的表达,HH受体,和FP中的GLI转录因子,出生后早期和晚期以及成人阶段的CVP和FOP。在成年人中,我们还研究了软腭,膝状和三叉神经节,将传入纤维延伸到前舌。Shh和Gas1是在所有三个乳头和软腭的味蕾中一致表达的唯一成分。在产后第一周,我们观察到HH信号传导成分在FP和邻近的广泛表达,上皮或间质和舌肌的无味丝状(FILIF)乳头。值得注意的是,我们观察到肌肉中FILIF和Gas1中Gli1的消除,舌上皮和Cdon中Ptch1的下调,产后晚期基质中的Gas1和Hip。Further,CVP和FOP上皮中的HH受体表达模式与前FP不同。在所有组件中,只有已知的HH信号的正调节剂,SHH,Ptch1,Gli1和Gli2在神经节中表达。我们的研究强调HH信号在不同的出生后发育期和前后味觉器官中的差异调节,并为功能研究奠定基础,以了解众多HH信号传导成分在出生后舌发育中的作用。
    The Hedgehog (HH) pathway regulates embryonic development of anterior tongue taste fungiform papilla (FP) and the posterior circumvallate (CVP) and foliate (FOP) taste papillae. HH signaling also mediates taste organ maintenance and regeneration in adults. However, there are knowledge gaps in HH pathway component expression during postnatal taste organ differentiation and maturation. Importantly, the HH transcriptional effectors GLI1, GLI2 and GLI3 have not been investigated in early postnatal stages; the HH receptors PTCH1, GAS1, CDON and HHIP, required to either drive HH pathway activation or antagonism, also remain unexplored. Using lacZ reporter mouse models, we mapped expression of the HH ligand SHH, HH receptors, and GLI transcription factors in FP, CVP and FOP in early and late postnatal and adult stages. In adults we also studied the soft palate, and the geniculate and trigeminal ganglia, which extend afferent fibers to the anterior tongue. Shh and Gas1 are the only components that were consistently expressed within taste buds of all three papillae and the soft palate. In the first postnatal week, we observed broad expression of HH signaling components in FP and adjacent, non-taste filiform (FILIF) papillae in epithelium or stroma and tongue muscles. Notably, we observed elimination of Gli1 in FILIF and Gas1 in muscles, and downregulation of Ptch1 in lingual epithelium and of Cdon, Gas1 and Hhip in stroma from late postnatal stages. Further, HH receptor expression patterns in CVP and FOP epithelium differed from anterior FP. Among all the components, only known positive regulators of HH signaling, SHH, Ptch1, Gli1 and Gli2, were expressed in the ganglia. Our studies emphasize differential regulation of HH signaling in distinct postnatal developmental periods and in anterior versus posterior taste organs, and lay the foundation for functional studies to understand the roles of numerous HH signaling components in postnatal tongue development.
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  • 文章类型: Journal Article
    Hedgehog(Hh)信号通路参与T细胞的分化和发育,在T细胞发育的不同阶段起着重要的调节作用。我们先前的研究表明,产前暴露于葡萄球菌肠毒素B(SEB)会改变后代胸腺中T细胞亚群的百分比。然而,目前尚不清楚产前SEB暴露是否会影响胸腺T细胞中的Hh信号通路.在本研究中,妊娠第16天的怀孕大鼠静脉注射15μgSEB一次,对新生和成年后代大鼠的胸腺进行无菌采集,以研究SEB对Hh信号通路的影响。首先发现产前SEB暴露明显导致新生和成年子代大鼠胸腺组织中Hh信号通路Shh和Dhh配体表达增加,但显著降低了膜受体Ptch1和Smo的表达水平,转录因子Gli1,以及CyclinD1,C-myc,和N-myc在胸腺T细胞Hh信号通路中的作用。这些数据表明,产前SEB暴露抑制了新生儿后代胸腺T淋巴细胞中的Hh信号通路,这种效应可以通过印记效应在成年后代中保持。
    The Hedgehog (Hh) signaling pathway is involved in T cell differentiation and development and plays a major regulatory part in different stages of T cell development. A previous study by us suggested that prenatal exposure to staphylococcal enterotoxin B (SEB) changed the percentages of T cell subpopulation in the offspring thymus. However, it is unclear whether prenatal SEB exposure impacts the Hh signaling pathway in thymic T cells. In the present study, pregnant rats at gestational day 16 were intravenously injected once with 15 μg SEB, and the thymi of both neonatal and adult offspring rats were aseptically acquired to scrutinize the effects of SEB on the Hh signaling pathway. It firstly found that prenatal SEB exposure clearly caused the increased expression of Shh and Dhh ligands of the Hh signaling pathway in thymus tissue of both neonatal and adult offspring rats, but significantly decreased the expression levels of membrane receptors of Ptch1 and Smo, transcription factor Gli1, as well as target genes of CyclinD1, C-myc, and N-myc in Hh signaling pathway of thymic T cells. These data suggest that prenatal SEB exposure inhibits the Hh signaling pathway in thymic T lymphocytes of the neonatal offspring, and this effect can be maintained in adult offspring via the imprinting effect.
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