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利用Tbx18谱系示踪小鼠模型及Tbx18条件性基因敲除小鼠模型,探讨转录因子Tbx18对小鼠心血管结构发育的影响.实验建立Tbx18-Cre/Rosa26R-EYFP和Tbx18-Cre/Rosa26R-Lac Z两种基因敲入谱系示踪小鼠模型和Tbx18:Cre/Cre基因敲除小鼠模型;通过免疫荧光及X-gal染色技术,示踪Tbx18在心血管系统结构形成中的命运;通过小鼠心脏整体血管免疫组化及切片HE染色、免疫组化、免疫荧光技术,比较Tbx18:Cre/Cre基因敲除小鼠与野生型对照小鼠心脏室壁结构及冠状血管结构发育情况.示踪结果提示,Tbx18参与小鼠冠状血管及室间隔结构的形成,并与冠脉平滑肌细胞共表达;对Tbx18基因敲除小鼠及野生型小鼠的心脏结构比较提示,Tbx18基因敲除后,仍能形成形态正常的冠状血管系统,小鼠心室肌及室间隔厚度较野生型无明显差异.结果表明,Tbx18参与小鼠心脏血管平滑肌及室间隔结构的形成,但其在小鼠心脏腔室结构及冠状血管结构形成过程中不是必需的. 相似文献
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在癌症类型中,上皮癌占绝大多数。从良性腺瘤过渡到恶性癌和转移期间,上皮肿瘤细胞获得去分化、迁移和入侵行为,同时上皮-间质转化(epithelial-mesenchymal transition EMT)伴随着显著的细胞形态学变化、细胞与细胞间及细胞与基质之间的粘附性丢失及重塑、并获得迁徙和侵袭能力。正如完全分化的上皮细胞转换成低分化、迁移和侵入性间质细胞,其涉及到一个高度的细胞可塑性、大量不同的基因和表观遗传学改变,因此EMT本身是一个多阶段的过程。该综述的目的是系统地总结EMT分子机制及EMT与肿瘤关系的最新进展。 相似文献
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上皮-间充质转化(epithelial-mesenchymal transition, EMT)是上皮细胞来源的恶性肿瘤细胞获得迁移和侵袭能力的重要生物学过程。为了探究Krüppel样因子5 (Krüppel-like factor 5, KLF5)调控宫颈癌细胞发生EMT过程的分子机制,首先在宫颈癌HeLa细胞瞬时转染Flag-KLF5质粒进行KLF5过表达,并通过MTT法、细胞划痕和Transwell实验证实, KLF5可以显著地抑制HeLa细胞的侵袭和迁移能力。然后采用Western-blot和实时定量PCR技术检测HeLa细胞中EMT相关基因的表达水平,结果显示E-cadherin表达升高, N-cadherin和MMP9表达降低;而且, E-cadherin基因的上游调控因子如SNAI1、SLUG、ZEB1/2和TWIST1等的m RNA表达下降。进一步开展对比研究,在Si Ha细胞中用si RNA沉默KLF5基因,再次验证了KLF5对EMT相关基因表达水平的影响。随后构建不同长度的SNAI1启动子截短体,用荧光素酶报告基因实验检测KLF5对SNAI1启动子活性的影响,结果显示KLF5可以抑制SNAI1启动子区域的活性,并且在HeLa细胞中过表达SNAI1基因后,可显著地促进细胞的EMT过程。以上结果表明, KLF5可通过调控SNAI1基因的表达来调节宫颈癌细胞的EMT过程,进而抑制宫颈癌细胞的迁移和侵袭能力。 相似文献
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转录因子Tbx18在胚胎心脏发育过程中起重要调控作用,是心外膜祖细胞标记之一|故以Tbx18为标记的阳性祖细胞群被称为:Tbx18+心外膜祖细胞(epicardial progenitor cells, EPCs)。小鼠胚胎、新生和成年期心脏组织细胞的特性区别较大,成年小鼠的心脏属于终末分化组织。但是,Tbx18+EPCs对成年小鼠心脏组织的贡献大小尚存争议。本研究拟定量分析Tbx18+EPCs对成年小鼠心脏组织的贡献大小。采用整体和组织切片X-gal染色检测成年心脏组织LacZ的表达|荧光激活细胞分选法(fluorescence activated cell sorting,FACS)分离成年Tbx18Cre/R26EYFP小鼠心脏组织EYFP+细胞。结果显示,在Tbx18+EPCs遗传谱系示踪小鼠,报告基因LacZ和EYFP在成年小鼠心脏的心室、心房、冠状动脉、室间隔等处表达|成年Tbx18Cre/R26EYFP小鼠心脏组织细胞用FACS分离,分选的EYFP+细胞比例平均约为33.94%。由此可见,成年小鼠心脏的心室、心房、冠状动脉、室间隔等心脏组织均可来源于Tbx18+EPCs|约1/3成年小鼠心脏组织细胞来源于Tbx18+EPCs。故Tbx18+EPCs参与成年小鼠心脏组织的部分形成。 相似文献
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心脏祖细胞(cardiac progenitor cells,CPCs)的研究对阐明先天性心脏病的机制及治疗心血管疾病具有重要意义.哺乳动物的心脏组织由多种不同CPCs分化形成.转录因子Tbx18在发育中的心外膜中表达,对心脏的发育形成起重要的调节作用.为了在组织及活体细胞水平检测和阐明Tbx18+CPC的分化潜能,应用Cre-LoxP系统建立Tbx18+CPCs基因命运谱系示踪模型:Tbx18-Cre/Rosa26R-EYFP和Tbx18-Cre/Rosa26R-LacZ双杂合基因敲入小鼠.该双杂合基因敲入小鼠通过Cre的表达能有效地示踪Tbx18+细胞在胚胎和成年小鼠中的分化命运.Tbx18-Cre/Rosa26R-EYFP双杂合小鼠心脏能非常容易地利用流式细胞分选系统(FACS)分离出YFP+细胞,也可在倒置共聚焦显微镜下观察.应用X-gal染色分析其表达模式,揭示Tbx18命运谱系参与心房肌、室间隔、心室肌、冠状动脉、瓣膜等的形成.应用免疫荧光技术初步揭示Tbx18+CPCs向心脏肌钙蛋白T(cTNT)阳性心肌细胞和平滑肌肌球蛋白重链11(MYH11)阳性血管平滑肌细胞分化的潜能.心脏是一个由多种肌肉和非肌肉组织细胞构成的复杂器官.推测Tbx18可能在心脏祖细胞向肌源性细胞分化的信号通路中起重要调节作用.在上述研究中应用基因谱系示踪技术,验证Tbx18可作为一类CPCs的标志,为更深入揭示心脏祖细胞向心系细胞的分化潜能打下基础. 相似文献
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IL-18是IL-1家族的一个成员,最初发现被命名为IFN-γ诱导因子.现在研究表明,IL-18是炎症反应的重要标志,参与许多慢性炎症和自身免疫性疾病炎性反应.证明了IL-18在JurkatT淋巴细胞的炎症反应中能够调节CSF-1的表达,其信号机制是IL-18通过MyD88-NF-κB-CSF-1信号途径上调CSF-1的基因转录. 相似文献
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黑色素瘤是一种极易发生转移的恶性皮肤肿瘤,具有高度的致死性。上皮-间充质细胞转化(Epithelial-mesenchymal transition, EMT)在胚胎发育过程中起到非常重要的作用,同时在肿瘤的发生和恶化过程中也扮演着重要的角色。miRNA具有广谱的调节能力,对于肿瘤发生和EMT形成都能产生不同程度的影响。本文整合黑色素瘤细胞系转录组和miRNA组测序数据,在转录组数据中筛选得到参与肿瘤EMT过程的基因,通过Mirsystem软件预测并从miRNA组数据中筛选出与之负相关的11个miRNA,包括miR-130a-3p、miR-130b-3p、miR-125a-5p、miR-30a-3p、miR-195-5p、miR-345-5p、miR-509-3-5p、miR-374a-5p、miR-509-5p、miR-148a-3p和miR-330-3p。经过生物信息学分析miRNA靶基因富集的分子网络和信号途径,发现了两个与细胞发育和细胞间相互作用密切相关的网络,以及多个参与调控EMT过程的信号通路。对11个miRNA进行分子生物学验证,发现miR-195-5p、miR-130a-3p、miR-509-5p和miR-509-3-5p共4个可以调节重要肿瘤基因的miRNA。本研究运用mRNA和miRNA两种转录组的测序数据筛选EMT相关miRNA的方法,为肿瘤多组学数据整合分析提供了新的研究思路,并以期能为肿瘤精准基因组学的发展发挥重要的推进作用。 相似文献
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高歌金钰莹延光海崔弘 《生理科学进展》2021,(3):199-202
Hippo信号通路是一条存在于从低等动物到高等动物,高度保守且由蛋白激酶和转录辅助激活因子组成的级联激酶反应链,整合来自细胞微环境的物理和化学信号,调节多种细胞的形态和功能。生理条件下,Hippo通过磷酸化核心信号轴负性调控YAP/TAZ的转录活性,进而调控下游靶基因转录,参与多细胞生物的增殖、凋亡、分化等生理过程。近年来研究表明,Hippo通路的激活与失活,参与肺纤维化病理过程。本文对Hippo信号通路与肺纤维化的最新研究进展进行综述,为研究肺纤维化的治疗提供参考。 相似文献
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转录因子Tbx18在泌尿系发育中发挥重要作用。利用遗传谱系示踪模型,揭示了Tbx18+肾祖细胞具有向多种肾系细胞分化的潜能。但尚无文献报道其是否具有向脂肪细胞分化的潜能。本研究通过对Tbx18Cre/Rosa26LacZ双杂合小鼠泌尿系组织进行整体X-gal染色发现,肾包膜、输尿管及肾周脂肪组织能特异性表达β-gal蛋白,说明肾包膜、输尿管及肾周脂肪组织可能来源于Tbx18+祖细胞。对Tbx18Cre/Rosa26EYFP双杂合小鼠泌尿系组织进行免疫荧光染色,发现部分脂滴相关蛋白+(perilipin)脂肪细胞能表达标记蛋白EYFP,说明部分泌尿系脂肪细胞来源于Tbx18+祖细胞。本研究揭示了Tbx18+祖细胞具有分化为脂肪细胞的潜能,进一步证实了Tbx18+肾祖细胞的多分化潜能。结合本研究结果,若进一步研究肾损伤时,来源于Tbx18+祖细胞的泌尿系脂肪细胞是否进一步增多,将会为肾损伤的再生修复提供一些思路和启发。 相似文献
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为了探讨Tbx18-Cre基因敲入小鼠(Tbx18:Cre knock-in Mus musculus)的繁殖、鉴定及Tbx18基因敲除小鼠和遗传示踪小鼠模型的应用,将Tbx18-Cre基因敲入杂合子小鼠进行繁殖,应用PCR法鉴定其子代基因型。将子代雌雄杂合子小鼠互交,应用H.E染色观察Tbx18基因敲除胚鼠心的形态学变化。将杂合子小鼠与RosaEYFP报告小鼠交配,应用心冰冻切片技术观察Tbx18:Cre/Rosa26REYFP双转基因遗传示踪胚鼠心内Tbx18阳性心外膜祖细胞发育命运。结果表明,用于繁殖、基因敲除研究及基因遗传示踪的子代基因型均符合孟德尔遗传规律。同时心H.E染色和心冰冻切片发现,Tbx18敲除小鼠心窦房结发育存在缺陷,而Tbx18阳性心外膜祖细胞是心发育重要的祖细胞来源。研究结果揭示,Tbx18-Cre基因敲除小鼠是研究先天性心脏病发病机制的理想模式动物,Tbx18阳性心外膜祖细胞可能是心脏病患者心脏修复和再生潜在的种子细胞。 相似文献
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Serena Ricci Federica Pinto Adelaide Auletta Antonio Giordano Alfonso Giovane Giuliana Settembre Mariarosaria Boccellino Silvia Boffo Angelina Di Carlo Marina Di Domenico 《Journal of cellular biochemistry》2019,120(5):6813-6819
The most prevalent malignancy in the oral cavity is represented by oral squamous cell carcinoma, an aggressive disease mostly detected in low-income communities. This neoplasia is mostly diffused in older men particularly exposed to risk factors such as tobacco, alcohol, and a diet rich in fatty foods and poor in vegetables. In oral squamous cell carcinoma, a wide range of matrix-cleaving proteinases are involved in extracellular matrix remodeling of cancer microenvironment. In particular, matrix metalloproteinases (MMPs) represent the major and most investigated protagonists. Owing to their strong involvement in malignant pathologies, MMPs are considered the most promising new biomarkers in cancer diagnosis and prognosis. The interest in studying MMPs in oral cancer biology is also owing to their prominent role in epithelial-to-mesenchymal transition (EMT). EMT is an intricate process involving different complex pathways. EMT-related proteins are attractive diagnostic biomarkers that characterize the activation of biological events that promote cancer's aggressive expansion. Different antioncogenic natural compounds have been investigated to counteract oral carcinogenesis, with the scope of obtaining better clinical results and lower morbidity. In particular, we describe the role of different nutraceuticals used for the regulation of MMP-related invasion and proliferation of oral cancer cells. 相似文献
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Chengdong Wang Richard Kin Ting Kam Weili Shi Yin Xia Xiongfong Chen Ying Cao Jianmin Sun Yanzhi Du Gang Lu Zijiang Chen Wood Yee Chan Sun On Chan Yi Deng Hui Zhao 《The Journal of biological chemistry》2015,290(36):21925-21938
The neural crest (NC) is a transient, migratory cell population that differentiates into a large variety of tissues including craniofacial cartilage, melanocytes, and peripheral nervous system. NC is initially induced at the border of neural plate and non-neural ectoderm by balanced regulation of multiple signaling pathways among which an intermediate bone morphogenetic protein (BMP) signaling is essential for NC formation. ets1, a proto-oncogene playing important roles in tumor invasion, has also been implicated in delamination of NC cells. In this study, we investigated Ets1 function in NC formation using Xenopus. Overexpression of ets1 repressed NC formation through down-regulation of BMP signaling. Moreover, ets1 repressed the BMP-responsive gene id3 that is essential for NC formation. Conversely, overexpression of id3 can partially rescue the phenotype of NC inhibition induced by ectopic ets1. Mechanistically, we found that Ets1 binds to id3 promoter as well as histone deacetylase 1, suggesting that Ets1 recruits histone deacetylase 1 to the promoter of id3, thereby inducing histone deacetylation of the id3 promoter. Thus, our studies indicate that Ets1 regulates NC formation through attenuating BMP signaling epigenetically. 相似文献
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Lymphatic vessels are essential to regulate interstitial fluid homeostasis and diverse immune responses. A number of crucial factors, such as VEGFC, SOX18, PROX1, FOX2C, and GJC2, have been implicated in differentiation and/or maintenance of lymphatic endothelial cells (LECs). In humans, dysregulation of these genes is known to cause lymphedema, a debilitating condition which adversely impacts the quality of life of affected individuals. However, there are no currently available pharmacological treatments for lymphedema, necessitating identification of additional factors modulating lymphatic development and function which can be targeted for therapy. In this report, we investigate the function of genes associated with Bone Morphogenetic Protein (BMP) signaling in lymphatic development using zebrafish embryos. The knock-down of BMP type II receptors, Bmpr2a and Bmpr2b, and type I receptors, Alk3 and Alk3b, as well as SMAD5, an essential cellular mediator of BMP signaling, led to distinct lymphatic defects in developing zebrafish. Therefore, it appears that each constituent of the BMP signaling pathway may have a unique function during lymphatic development. Taken together, our data demonstrate that BMP signaling is essential for normal lymphatic vessel development in zebrafish. 相似文献
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Single-site polymorphisms in human class I major histocompatibility complex (MHC) products (HLA-B) have recently been shown to correlate with HIV disease progression or control. An identical single-site polymorphism (at residue 97) in the mouse class I product H-2Ld influences stability of the complex. To gain insight into the human polymorphisms, here we examined peptide binding, stability, and structures of the corresponding Ld polymorphisms, Trp97 and Arg97. Expression of LdW97 and LdR97 genes in a cell line that is antigen-processing competent showed that LdR97 was expressed at higher levels than LdW97, consistent with enhanced stability of self-peptide·LdR97 complexes. To further examine peptide-binding capacities of these two allelic variants, we used a high affinity pep-Ld specific probe to quantitatively examine a collection of self- and foreign peptides that bind to Ld. LdR97 bound more effectively than LdW97 to most peptides, although LdW97 bound more effectively to two peptides. The results support the view that many self-peptides in the Ld system (or the HLA-B system) would exhibit enhanced binding to Arg97 alleles compared with Trp97 alleles. Accordingly, the self-peptide·MHC-Arg97 complexes would influence T-cell selection behavior, impacting the T-cell repertoire of these individuals, and could also impact peripheral T cell activity through effects of self-peptide·Ld interacting with TCR and/or CD8. The structures of several peptide·LdR97 and peptide·LdW97 complexes provided a framework of how this single polymorphism could impact peptide binding. 相似文献
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Adriana C. Gittenberger‐de Groot Elisabeth M. Winter Robert E. Poelmann 《Journal of cellular and molecular medicine》2010,14(5):1056-1060
The proepicardial-derived epicardium covers the myocardium and after a process of epithelial–mesenchymal transition (EMT) forms epicardium-derived cells (EPDCs). These cells migrate into the myocardium and show an essential role in the induction of the ventricular compact myocardium and the differentiation of the Purkinje fibres. EPDCs are furthermore the source of the interstitial fibroblast, the coronary smooth muscle cell and the adventitial fibroblast. The possible differentiation into cardiomyocytes, endothelial cells and the recently described telocyte and other cells in the cardiac stem cell niche needs further investigation. Surgically or genetically disturbed epicardial and EPDC differentiation leads to a spectrum of abnormalities varying from thin undifferentiated myocardium, which can be embryonic lethal, to a diminished coronary vascular bed with even absent main coronary arteries. The embryonic potential of EPDCs has been translated to both structural and functional congenital malformations and adult cardiac disease, like development of Ebstein’s malformation, arrhythmia and cardiomyopathies. Furthermore, the use of adult EPDCs as a stem cell source has been explored, showing in an animal model of myocardial ischemia the recapitulation of the embryonic program with improved function, angiogenesis and less adverse remodeling. Combining EPDCs and adult cardiomyocyte progenitor cells synergistically improved these results. The contribution of injected EPDCs was instructive rather than constructive. The finding of reactivation of the endogenous epicardium in ischemia with re-expression of developmental genes and renewed EMT marks the onset of a novel therapeutic focus. 相似文献