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1.
诱导心脏发生的早期信号通路   总被引:2,自引:0,他引:2  
心脏是胚胎发生过程中最早形成的器官 .心脏前体的特化是组织间及细胞与细胞之间相互作用的结果 ,这一过程包含了诱导信号作用的时间和空间完整程序 .以脊椎动物和无脊椎动物作为模式动物 ,总结了在早期心脏发生中发挥重要作用的诱导信号通路 :BMP Dpp ,Wnt Wingless ,FGF及Notch信号通路 ,并阐述了信号通路之间的通讯 (crosstalk)以及信号通路与心脏发生相关的关键转录调节因子之间的协同诱导作用 .  相似文献   

2.
骨形态发生蛋白1(BMP1)是一类属于虾红素家族的金属蛋白酶,它在细胞外基质的形成以及调控TGFβ信号通路的过程中发挥重要作用。BMP1基因在动物卵泡发育过程中具有不同程度表达,并以某种形式参与了动物胚胎的发生和发育过程。开展对BMP1基因的研究将有助于人们从基因角度进一步阐明动物卵泡的形成和胚胎发育的机制,对医学和畜牧业等领域将产生积极的影响。着重从BMP1基因在动物胚胎发育过程中的表达定位、功能及其机制进行综述。  相似文献   

3.
转录共激活物-Yes相关蛋白(YAP)及其调控途径-Hippo在控制晶状体发育过程中的细胞生长和命运中起重要作用,而成纤维细胞生长因子(FGF)是晶状体细胞行为的调节因子。为了揭示Hippo-YAP信号通路在FGF诱导的晶状体上皮细胞增殖和纤维分化中的作用,本研究将大鼠晶状体上皮外植体与FGF一起孵育以诱导上皮细胞增殖和纤维形成,采用免疫标记法检测Hippo信号传导成分和磷酸化YAP的表达。结果显示,FGF诱导的晶状体细胞增殖与Total-YAP的强核定位及磷酸化YAP的低染色水平相关。FGF诱导的晶状体纤维分化与磷酸化YAP及核心Hippo信号传导组分的升高有关。使用维替泊芬抑制YAP后,可显著抑制FGF诱导的晶状体细胞增殖。FGF在晶状体细胞增殖和分化过程中促进Hippo/YAP信号传导,其中FGF诱导的核YAP表达在促进晶状体上皮细胞增殖中发挥重要作用。  相似文献   

4.
在发育过程中,新生血管的形成与稳态维持是机体生命活动的重要基础.而血管生成机制复杂,参与并促进血管生成的因子众多.此过程发生异常直接与血管类疾病、炎症、癌症等疾病密切相关.除了VEGF/VEGFR,Ang-Tie2,DLL4-Notch和PDGF-BB/PDGFRβ等主要调节血管形成的传导通路外,BMP9/ALK1/Endoglin通路在其中也起着重要的作用.此通路中二聚化配体BMP9作为信号分子,与受体ALK1和Endoglin结合后激活受体,进而调控下游靶基因的表达.本文旨在对此信号通路中关键节点的分子结构和作用机制进行阐述,并对未来的机制研究与药物开发进行展望.  相似文献   

5.
BMP经典的Smad通路和非经典信号的MAPK通路调控中胚层形成、骨骼发育和肿瘤形成等许多生物学过程.TRAF6作为BMP非经典信号通路中的重要组成部分,在非经典通路激活中有重要的调节作用.对于TRAF6与BMP经典信号通路的关系未见相关报道.本研究发现,过表达TRAF6后Smad1的表达被抑制;反之,敲低TRAF6后Smad1的表达上升.进一步的研究表明,TRAF6对Smad1的调节作用发生在mRNA水平.这些研究揭示了TRAF6在协调BMP经典通路和非经典通路中发挥着重要作用.  相似文献   

6.
肾脏发育是一个复杂的过程,需要在输尿管芽细胞和基质细胞相互诱导下,引起细胞生长、增殖、分化,从而产生肾单位及各种管状结构,最终发育为成熟的肾脏。在肾脏发育过程中,GDNF/Ret、Wnt、BMP等一系列信号通路参与了发育的调控过程。这些信号通路在肾脏发育的不同阶段或不同位置发挥着重要的调控作用,并且通路之间存在相互的调控,从而形成了一个复杂而精细的调控网络,保证了肾脏的正常发育。文章概括了肾脏发育的过程,总结了肾脏发育过程中相关信号通路对肾脏发育的调控作用以及信号通路之间的相互调控。  相似文献   

7.
TGF-β超家族在软骨发生、发育和维持中的作用   总被引:1,自引:0,他引:1  
杨冠  杨晓 《遗传》2008,30(8):953-959
转化生长因子b(Transforming growth factor b, TGF-b)超家族包括TGF-b和骨形态发生蛋白(Bone morphogenetic protein,BMP)两个亚家族。TGF-b超家族信号通路的配体、配体拮抗分子、受体、信号转导分子均在软骨内成骨过程中发挥各自独特的作用, 参与调控软骨细胞的谱系分化、增殖、成熟、凋亡和矿化。BMP信号能起始间充质细胞向软骨细胞分化并维持软骨细胞的特性, 在软骨发生过程中起主导作用; 在生长板发育的过程中, BMP信号促进软骨细胞的成熟, 促进成骨, 而TGF-b信号抑制软骨细胞的肥大分化, 维持生长板中适量的软骨细胞; TGF-b信号和BMP信号对于关节软骨的维持和修复都是不可或缺的。因此, TGF-b超家族的重要作用贯穿骨骼发育过程的始终。  相似文献   

8.
肝脏发育从肝芽的出现开始,到肝祖细胞的形成,接着肝祖细胞的增殖、分化和迁移,直至最后器官的形成,经历了复杂的细胞信号调控过程。本文综述了肝脏发育过程中常见的信号调控作用,包括成纤维生长因子(fibroblast growth factor,FGF)、骨形态发生蛋白(bone morphogenetic protein,BMP)、β-转化生长因子(transforming growth factor-β,TGF-β)、肝细胞生长因子(hepatocyte growth factor,HGF)和Wnt等信号通路,并重点讨论了在胚胎阶段调控肝脏发育的信号途径以及肝细胞和胆管细胞发育成熟过程中的信号因子作用,最后对肝脏再生相关的信号调控进行了简要介绍。  相似文献   

9.
经典的Wnt/β-catenin信号通路参与调控机体的多种生物学功能,包括干细胞自我更新,细胞的增殖、分化、凋亡以及胚胎早期发育和组织再生等,与癌症发生发展紧密相关.此外,该信号通路在胸腺T细胞的发育和分化过程中发挥重要作用,影响抗肿瘤免疫效应的多个环节.异常激活的Wnt/β-catenin信号通路可诱导恶性肿瘤的形成...  相似文献   

10.
牙齿的发育过程,包括由胚胎早期预定成牙部位到发育形成完整的牙齿,是一个复杂的连续过程,牙齿的发育过程实际上就是牙源性上皮和颅神经嵴来源的牙源性间充质之间的相互作用的结果.骨形态发生蛋白(BMPs)最初被认为是一种具有高效骨诱导性的蛋白,能够诱导未分化的间充质细胞转化形成软骨以及骨组织,之后的研究证明BMPs在胚胎发育过程中起到至关重要的作用.至今为止经过众多科学家的研究,牙齿发育与BMP信号通路的关系已经研究的相当透彻.  相似文献   

11.
Abstract

Environmental stressors such as chemicals and physical agents induce various oxidative stresses and affect human health. To elucidate their underlying mechanisms, etiology and risk, analyses of gene expression signatures in environmental stress-induced human diseases, including neuronal disorders, cancer and diabetes, are crucially important. Recent studies have clarified oxidative stress-induced signaling pathways in human and experimental animals. These pathways are classifiable into several categories: reactive oxygen species (ROS) metabolism and antioxidant defenses, p53 pathway signaling, nitric oxide (NO) signaling pathway, hypoxia signaling, transforming growth factor (TGF)-β bone morphogenetic protein (BMP) signaling, tumor necrosis factor (TNF) ligand–receptor signaling, and mitochondrial function. This review describes the gene expression signatures through which environmental stressors induce oxidative stress and regulate signal transduction pathways in rodent and human tissues.  相似文献   

12.
Bone morphogenetic proteins (BMPs) belong to the transforming growth factor β (TGFβ) superfamily of secreted molecules. BMPs play essential roles in multiple developmental and homeostatic processes in metazoans. Malfunction of the BMP pathway can cause a variety of diseases in humans, including cancer, skeletal disorders and cardiovascular diseases. Identification of factors that ensure proper spatiotemporal control of BMP signaling is critical for understanding how this pathway is regulated. We have used a unique and sensitive genetic screen to identify the plasma membrane-localized tetraspanin TSP-21 as a key new factor in the C. elegans BMP-like “Sma/Mab” signaling pathway that controls body size and postembryonic M lineage development. We showed that TSP-21 acts in the signal-receiving cells and genetically functions at the ligand-receptor level. We further showed that TSP-21 can associate with itself and with two additional tetraspanins, TSP-12 and TSP-14, which also promote Sma/Mab signaling. TSP-12 and TSP-14 can also associate with SMA-6, the type I receptor of the Sma/Mab pathway. Finally, we found that glycosphingolipids, major components of the tetraspanin-enriched microdomains, are required for Sma/Mab signaling. Our findings suggest that the tetraspanin-enriched membrane microdomains are important for proper BMP signaling. As tetraspanins have emerged as diagnostic and prognostic markers for tumor progression, and TSP-21, TSP-12 and TSP-14 are all conserved in humans, we speculate that abnormal BMP signaling due to altered expression or function of certain tetraspanins may be a contributing factor to cancer development.  相似文献   

13.
Follistatin‐like 1 (Fstl1) is a member of the secreted protein acidic rich in cysteins (SPARC) family and has been implicated in many different signaling pathways, including bone morphogenetic protein (BMP) signaling. In many different developmental processes like, dorso‐ventral axis establishment, skeletal, lung and ureter development, loss of function experiments have unveiled an important role for Fstl1. Fstl1 largely functions through inhibiting interactions with the BMP signaling pathway, although, in various disease models, different signaling pathways, like activation of pAKT, pAMPK, Na/K‐ATPase, or innate immune responses, are linked to Fstl1. How Fstl1 inhibits BMP signaling remains unclear, although it is known that Fstl1 does not function through a scavenging mechanism, like the other known extracellular BMP inhibitors such as noggin. It has been proposed that Fstl1 interferes with BMP receptor complex formation and as such inhibits propagation of the BMP signal into the cell. Future challenges will encompass the identification of the factors that determine the mechanisms that underlie the fact that Fstl1 acts by interfering with BMP signaling during development, but through other signaling pathways during disease. Birth Defects Research (Part C) 99:61–69, 2013. © 2013 Wiley Periodicals, Inc.  相似文献   

14.
Bone Morphogenetic Proteins (BMPs) form a group of secreted factors that belongs to the TGF-β superfamily. Among different roles in a number of immune cell types, BMPs are known to regulate T cell development within the thymus, although the role of BMP signaling in human mature T cells remains elusive. In this study, we demonstrate that canonical BMP signaling is necessary during two critical events that regulate the size and function of human naive CD4+ T cell population: activation and homeostasis. Upon stimulation via TCR, naive CD4+ T cells upregulate the expression of BMP ligands triggering canonical BMP signaling in CD25+ cells. Blockade of BMP signaling severely impairs CD4+ T cell proliferation after activation mainly through regulation of IL-2, since the addition of this cytokine recuperates normal T cell expansion after inhibition of BMP signaling. Similarly, activation of canonical BMP pathway is required for both the maintenance of cell survival and the homeostatic proliferation induced by IL-7, a key factor for T cell homeostasis. Moreover, upregulation of two critical receptors for T cell homeostasis, CXCR4 and CCR9, triggered by IL-7 is also abrogated in the absence of BMP signaling. Collectively, we describe important roles of the canonical BMP signaling in human naive CD4+ T cell activation and homeostasis that could be valuable for clinical application.  相似文献   

15.
16.
The coordinated growth and development of synapses is critical for all aspects of neural circuit function and mutations that disrupt these processes can result in various neurological defects. Several anterograde and retrograde signaling pathways, including the canonical Bone Morphogenic Protein (BMP) pathway, regulate synaptic development in vertebrates and invertebrates. At the Drosophila larval neuromuscular junction (NMJ), the retrograde BMP pathway is a part of the machinery that controls NMJ expansion concurrent with larval growth. We sought to determine whether the conserved Hippo pathway, critical for proportional growth in other tissues, also functions in NMJ development. We found that neuronal loss of the serine‐threonine protein kinase Tao, a regulator of the Hippo signaling pathway, results in supernumerary boutons which contain a normal density of active zones. Tao is also required for proper synaptic function, as reduction of Tao results in NMJs with decreased evoked excitatory junctional potentials. Surprisingly, Tao function in NMJ growth is independent of the Hippo pathway. Instead, our experiments suggest that Tao negatively regulates BMP signaling as reduction of Tao leads to an increase in pMad levels in motor neuron nuclei and an increase in BMP target gene expression. Taken together, these results support a role for Tao as a novel inhibitor of BMP signaling in motor neurons during synaptic development and function.  相似文献   

17.
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19.

Background  

The canonical Wnt signaling pathway has a number of critical functions during embryonic development and, when activated aberrantly, in the genesis of cancer. Current evidence suggests that during eye development, regulation of Wnt signaling is critical for patterning the surface ectoderm that will contribute to multiple components of the eye. Wnt signaling loss-of-function experiments show that a region of periocular ectoderm will form ectopic lentoid bodies unless the Wnt pathway modifies its fate towards other structures. Consistent with this, Wnt signaling gain of function in the ocular region ectoderm results in a suppression of lens fate.  相似文献   

20.
Abstract

Atherosclerosis is a life-threatening disease and a major cause of mortalities worldwide. While many of the atherosclerotic sequelae are reflected as microvascular effects in the eye, the molecular mechanisms of their development is not yet known. In this study, we employed a systems biology approach to unveil the most significant events and key molecular mediators of ophthalmic sequelae caused by atherosclerosis. Literature mining was used to identify the proteins involved in both atherosclerosis and ophthalmic diseases. A protein–protein interaction (PPI) network was prepared using the literature-mined seed nodes. Network topological analysis was carried out using Cytoscape, while network nodes were annotated using database for annotation, visualization and integrated discovery in order to identify the most enriched pathways and processes. Network analysis revealed that mitogen-activated protein kinase 1 (MAPK1) and protein kinase C occur with highest betweenness centrality, degree and closeness centrality, thus reflecting their functional importance to the network. Our analysis shows that atherosclerosis-associated ophthalmic complications are caused by the convergence of neurotrophin signaling pathways, multiple immune response pathways and focal adhesion pathway on the MAPK signaling pathway. The PPI network shares features with vasoregression, a process underlying multiple vascular eye diseases. Our study presents a first clear and composite picture of the components and crosstalk of the main pathways of atherosclerosis-induced ocular diseases. The hub bottleneck nodes highlight the presence of molecules important for mediating the ophthalmic complications of atherosclerosis and contain five established drug targets for future therapeutic modulation efforts.  相似文献   

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