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1.
造血干细胞是一类具有自我更新能力和分化成所有种类血细胞能力的多潜能干细胞,该类群细胞来源于中胚层细胞,最终定植于骨髓中。造血干细胞的增殖分化由多个信号通路精细调控,其中,Wnt信号通路在调控其自我更新的过程中具有重要作用。该文综述了多年来关于Wnt信号通路在脊椎动物(小鼠)造血干细胞自我更新中的研究,有助于了解Wnt信号通路的作用机制,也有望为改善体外增殖造血干细胞的效果提供理论支持。  相似文献   

2.
造血干细胞是一群具有自我更新及分化能力的多能干细胞,可以分化为所有类型的成熟血细胞.造血干细胞的发育过程受到多种转录因子及信号通路的精密调控,任何调控失衡都将导致严重的发育缺陷或者重大疾病.本文系统总结了脊椎动物(小鼠及斑马鱼)造血干细胞发育过程中发挥关键作用的信号通路及转录因子,不仅有助于理解造血干细胞发生的分子机制,而且对完善调控网络以及促进基础向临床转化具有一定的理论指导意义.  相似文献   

3.
Wnt信号分子是一类在无脊椎与脊椎动物的多种组织中广泛表达且进化上高度保守的信号刺激因子,由于它们在生长、发育、代谢和干细胞调节等多种生物学过程中的重要生物学功能而被广泛重视。根据其激活的信号通路不同,Wnt分子可分为经典和非经典两类。经典类和非经典类Wnt分子分别通过激活β-catenin、Ca2+及JNK信号通路而发挥作用。近年来的研究显示,经典和非经典Wnt信号通路均在造血干细胞的自我更新和功能维持的调控中发挥关键作用。该文通过对经典和非经典Wnt信号通路的分子调控机理的探讨,对近年来有关Wnt信号通路在HSC自我更新调控中的研究进展进行了综述,对Wnt信号通路与造血微环境中其他信号通路在造血发生、维持和重建中的关系进行了讨论。  相似文献   

4.
造血干细胞可以重建整个血液和免疫系统,其自我更新和分化等功能的维持受内源微环境和外源信号的调控.神经调节作为调节机体稳态的三大体系之一,对成体造血干细胞和骨髓微环境的调控发挥重要作用.该文结合目前国内外已有的研究成果,对神经系统在造血干细胞功能调控和造血稳态维持中的作用进行综述.  相似文献   

5.
自我更新、多向分化和静息状态是造血干细胞的重要特征,其中静息状态的维持是维持造血干细胞数量及造血干细胞池稳定的重要机制。骨髓微环境是造血干细胞定居的场所,是维持造血干细胞静息必要的土壤,尤其是成骨细胞微环境可通过多种跨膜分子信号通路、黏附分子等调节造血干细胞的静息。造血干细胞静息关系到造血干细胞自我更新的平衡,其失衡与白血病的发生及白血病干细胞的干性维持相关。该文通过总结近几年最新研究进展并结合作者实验室的研究成果,对介导骨髓微环境调节造血干细胞静息的主要分子机制作一综述。  相似文献   

6.
干细胞作为一种未分化的祖细胞,目前已被广泛应用于开展组织损伤修复、再生以及干细胞特异谱系分化的研究.大量研究表明,干细胞所处的微环境对调控干细胞的生长和分化具有重要作用,多种溶液介质、细胞外基质和信号通路等参与了干细胞命运的调控.尽管已有大量研究证明,溶液介质(如激素和生长因子)在干细胞的生长和分化中发挥重要作用,但近年来越来越多的研究表明,机械力及力学信号转导同样在干细胞自我更新、分化、衰老和凋亡等细胞生理过程中起到重要的作用.本文将对机械应力响应的细胞基础、生物力学及力学信号调控干细胞自我更新和分化,以及生物力学调控干细胞命运可能的作用机制几个方面加以综述.  相似文献   

7.
张春霞  刘峰 《遗传》2021,(4):295-306
血液系统是维持机体生命活动最重要的系统之一,为机体提供所需的氧气和营养物质,通过物质交换维持内环境的稳态,同时为机体提供免疫防御与保护。血细胞是血液的重要组成成分,机体中成熟血细胞类型起源于具有自我更新及分化潜能的多能成体干细胞—造血干细胞(hematopoietic stem cells,HSCs)。造血干细胞及各类血细胞产生、发育及成熟的过程称为造血过程,该过程开始于胚胎发育早期并贯穿整个生命过程,任一阶段出现异常都可能导致血液疾病的发生。因此,深入探究造血发育过程及其调控机制对于认识并治疗血液疾病至关重要。近年来,以小鼠(Mus musculus)和斑马鱼(Danio rerio)作为动物模型来研究造血发育取得了一系列的进展。其中,BMP、Notch和Wnt等信号通路对造血干细胞的命运决定和产生发挥了重要作用。本文对这些信号通路在小鼠和斑马鱼造血过程中的调控作用进行系统总结,以期能够完善造血发育过程的调控网络并为临床应用提供指导。  相似文献   

8.
Zfx基因与干细胞自我更新   总被引:1,自引:0,他引:1  
干细胞具有自我更新保持不分化状态的特性,不同的干细胞具有不同的自我更新机制. Zfx基因(zinc fin ger-X gene)在部分胚胎干细胞和造血干细胞中高表达,该基因高表达有利于胚胎干细胞和造血干细胞自我更新; Zfx基因表达不足或缺乏的胚胎干细胞和造血干细胞自我更新的能力下降,细胞凋亡明显增加.在胚胎干细胞和造血干细胞中发现一些Zfx基因直接调控的靶基因,Zfx 基因可能是控制各种干细胞自我更新的共同的分子机制. Zfx基因表达不足不影响胚胎干细胞和造血干细胞的分化,缺乏 Zfx基因的胚胎干细胞和造血干细胞能够正常分化为各自的功能细胞.  相似文献   

9.
胚胎干细胞通过特殊内源性分子的表达,以及微环境中多种细胞因子和胞外基质的刺激,构成信号网络,共同调控自我更新.近年来,通过对Oct3/4、Nanog等胚胎干细胞特殊分子标记,以及LIF-STAT3,Wnt-β-连环素,BMP-Id等信号通路的研究,探讨了胚胎干细胞自我更新信号网络的分子机制.维持自我更新的关键在于胚胎干细胞生长微环境中的各种细胞因子和胞外基质的含量,以及细胞内源性特异分子表达量之间的平衡.  相似文献   

10.
稳态下,骨髓微环境(bone marrow microenvironment)被证实能通过多种信号通路和细胞因子调控造血干细胞(hematopoietic stem cells,HSCs)的自我更新、增殖、分化和迁移能力以维持造血系统的稳定。在衰老过程中,HSCs功能受损会导致造血系统功能的退化以及年龄相关的免疫应答的改变,增加机体对贫血、自身免疫性和骨髓增生性疾病的易感性。HSCs的衰老最初被认为是一种细胞内在调控机制,但近年来,随着对骨髓造血微环境研究的深入,人们发现骨髓微环境不但能在稳态下调控HSCs的功能,而且在HSCs衰老的过程中也发挥着重要作用。该文将对稳态及衰老情况下骨髓微环境对HSCs的调控作用作一综述。  相似文献   

11.
The elements of stem cell self-renewal: a genetic perspective   总被引:3,自引:0,他引:3  
Pazianos G  Uqoezwa M  Reya T 《BioTechniques》2003,35(6):1240-1247
Every day, the body produces billions of new blood cells. Each of these is derived from a rare cell in the bone marrow called the hematopoietic stem cell (HSC). Because most mature blood cells have a limited lifespan, the ability of HSCs to self-renew and replenish the mature cell compartment is critical to sustaining life. While great progress has been made in isolating HSCs and defining their functional and phenotypic characteristics, the molecular mechanisms that regulate their self-renewal remain a mystery. Over the last few years, alterations in HSC frequency and self-renewal capacity in transgenic and knock-out mice have led to the identification of novel mediators of HSC homeostasis in vivo. These genetically modified mice have revealed that maintenance of survival, proliferation, quiescence, and normal telomere length all contribute to the self-renewal of HSCs. They also highlight the need to test in context of the normal microenvironment the role of signaling molecules such as Notch and Wnt, which have emerged recently as important regulators of HSC self-renewal. The emerging picture these data provide of the regulation of self-renewal in HSCs has provided a better understanding of the basic biology of stem cells and holds promise for designing strategies to improve bone marrow transplantation.  相似文献   

12.
wnt3a but not wnt11 supports self-renewal of embryonic stem cells   总被引:5,自引:0,他引:5  
wnt proteins (wnts) promote both differentiation of midbrain dopaminergic cells and self-renewal of haematopoietic stem cells. Mouse embryonic stem (ES) cells can be maintained and self-renew on mouse feeder cell layers or in media containing leukemia inhibitory factor (LIF). However, the effects of wnts on ES cells self-renewal and differentiation are not clearly understood. In the present study, we found that conditioned medium prepared from L cells expressing wnt3a can replace feeder cell layers and medium containing LIF in maintaining ES cells in the proliferation without differentiation (self-renewal) state. By contrast, conditioned medium from NIH3T3 cells expressing wnt11 did not. Alkaline phosphatase staining and compact colony formation were used as criteria of cells being in the undifferentiated state. ES cells maintained in medium conditioned by Wnt3a expressing cells underwent freezing and thawing while maintaining properties seen with LIF maintained ES cells. Purified wnt3a did not maintain self-renewal of ES cells for prolonged intervals. Thus, other factors in the medium conditioned by wnt3a expressing cells may have contributed to maintenance of ES cells in a self-renewal state. Pluripotency of ES cells was determined with the use of embryoid bodies in vitro. PD98059, a MEK specific inhibitor, promoted the growth of undifferentiated ES cells maintained in conditioned medium from wnt3a expressing cells. By contrast, the P38 MAPK inhibitor SB230580 did not, suggesting a role for the MEK pathway in self-renewal and differentiation of ES cells maintained in the wnt3a cell conditioned medium. Thus, our results show that conditioned medium from wnt3a but not wnt11 expressing cells can maintain ES cells in self-renewal and in a pluripotent state.  相似文献   

13.
The molecular mechanisms specifying hematopoietic stem cells (HSCs) in the vertebrate embryo remain poorly understood. Recently in Nature, Traver and colleagues demonstrate that timed wnt to Notch relay signaling across multiple cell types serves as an early upstream mechanism of HSC induction in zebrafish (Clements et?al., 2011).  相似文献   

14.
Pten deletion from adult mouse hematopoietic cells activates the PI3-kinase pathway, inducing hematopoietic stem cell (HSC) proliferation, HSC depletion, and leukemogenesis. Pten is also mutated in human leukemias, but rarely in early childhood leukemias. We hypothesized that this reflects developmental changes in PI3-kinase pathway regulation. Here we show that Rictor deletion prevents leukemogenesis and HSC depletion after Pten deletion in adult mice, implicating mTORC2 activation in these processes. However, Rictor deletion had little effect on the function of normal HSCs. Moreover, Pten deletion from neonatal HSCs did not activate the PI3-kinase pathway or promote HSC proliferation, HSC depletion, or leukemogenesis. Pten is therefore required in adult, but not neonatal, HSCs to negatively regulate mTORC2 signaling. This demonstrates that some critical tumor suppressor mechanisms in adult cells are not required by neonatal cells. Developmental changes in key signaling pathways therefore confer temporal changes upon stem cell self-renewal and tumor suppressor mechanisms.  相似文献   

15.
R Sugimura  XC He  A Venkatraman  F Arai  A Box  C Semerad  JS Haug  L Peng  XB Zhong  T Suda  L Li 《Cell》2012,150(2):351-365
Wnt signaling is involved in self-renewal and maintenance of hematopoietic stem cells (HSCs); however, the particular role of noncanonical Wnt signaling in regulating HSCs in vivo is largely unknown. Here, we show Flamingo (Fmi) and Frizzled (Fz) 8, members of noncanonical Wnt signaling, both express in and functionally maintain quiescent long-term HSCs. Fmi regulates Fz8 distribution at the interface between HSCs and N-cadherin(+) osteoblasts (N-cad(+)OBs that enrich osteoprogenitors) in the niche. We further found that N-cad(+)OBs predominantly express noncanonical Wnt ligands and inhibitors of canonical Wnt signaling under homeostasis. Under stress, noncanonical Wnt signaling is attenuated and canonical Wnt signaling is enhanced in activation of HSCs. Mechanistically, noncanonical Wnt signaling mediated by Fz8 suppresses the Ca(2+)-NFAT- IFNγ pathway, directly or indirectly through the CDC42-CK1α complex and also antagonizes canonical Wnt signaling in HSCs. Taken together, our findings demonstrate that noncanonical Wnt signaling maintains quiescent long-term HSCs through Fmi and Fz8 interaction in the niche.  相似文献   

16.
A hypomorphic Prep1 mutation results in embryonic lethality at late gestation with a pleiotropic embryonic phenotype that includes defects in all hematopoietic lineages. Reduced functionality of the hematopoietic stem cells (HSCs) compartment might be responsible for the hematopoietic phenotype observed at mid-gestation. In this paper we demonstrate that Prep1 regulates the number of HSCs in fetal livers (FLs), their clonogenic potential and their ability to de novo generate the hematopoietic system in ablated hosts. Furthermore, we show that Prep1 controls the self-renewal ability of the FL HSC compartment as demonstrated by serial transplantation experiments. The premature exhaustion of Prep1 mutant HSCs correlates with the reduced quiescent stem cell pool thus suggesting that Prep1 regulates the self-renewal ability by controlling the quiescence/proliferation balance. Finally, we show that in FL HSCs Prep1 absence induces the interferon signaling pathway leading to premature cycling and exhaustion of fetal HSCs.  相似文献   

17.
Nemeth MJ  Bodine DM 《Cell research》2007,17(9):746-758
Hematopoietic stem cells (HSCs) are a rare population of cells that are responsible for life-long generation of blood cells of all lineages. In order to maintain their numbers, HSCs must establish a balance between the opposing cell fates of self-renewal (in which the ability to function as HSCs is retained) and initiation of hematopoietic differentiation. Multiple signaling pathways have been implicated in the regulation of HSC cell fate. One such set of pathways are those activated by the Wnt family of ligands. Wnt signaling pathways play a crucial role during embryogenesis and deregulation of these pathways has been implicated in the formation of solid tumors. Wnt signaling also plays a role in the regulation of stem cells from multiple tissues, such as embryonic, epidermal, and intestinal stem cells. However, the function of Wnt signaling in HSC biology is still controversial. In this review, we will discuss the basic characteristics of the adult HSC and its regulatory microenvironment, the "niche", focusing on the regulation of the HSC and its niche by the Wnt signaling pathways.  相似文献   

18.
Cytokine signaling pathways are important in promoting hematopoietic stem cell (HSC) self-renewal, proliferation and differentiation. Mpl receptor and its ligand, TPO, have been shown to play an essential role in the early steps of adult hematopoiesis. We previously demonstrated that the cytoplasmic domain of Mpl promotes hematopoietic commitment of embryonic stem cells in vitro, and postulated that Mpl could be important in the establishment of definitive hematopoiesis. To answer this question, we investigated the temporal expression of Mpl during mouse development by in situ hybridization. We found Mpl expression in the HSCs clusters emerging in the AGM region, and in the fetal liver (FL) as early as E10.5. Using Mpl(-/-) mice, the functional relevance of Mpl expression was tested by comparing the hematopoietic progenitor (HP) content, long-term hematopoietic reconstitution (LTR) abilities and HSC content of control and Mpl(-/-) embryos at different times of development. In the AGM, we observed delayed production of HSCs endowed with normal LTR but presenting a self-renewal defect. During FL development, we detected a decrease in HP and HSC potential associated with a defect in amplification and self-renewal/survival of the lin(-) AA4.1(+) Sca1(+) population of HSCs. These results underline the dual role of Mpl in the generation and expansion of HSCs during establishment of definitive hematopoiesis.  相似文献   

19.
Thrombopoietin (TPO) is the cytokine that is chiefly responsible for megakaryocyte production but increasingly attention has turned to its role in maintaining hematopoietic stem cells (HSCs). HSCs are required to initiate the production of all mature hematopoietic cells, but this differentiation needs to be balanced against self-renewal and quiescence to maintain the stem cell pool throughout life. TPO has been shown to support HSC quiescence during adult hematopoiesis, with the loss of TPO signaling associated with bone marrow failure and thrombocytopenia. Recent studies have shown that constitutive activation mutations in Mpl contribute to myeloproliferative disease. In this review, we will discuss TPO signaling pathways, regulation of TPO levels and the role of TPO in normal hematopoiesis and during myeloproliferative disease.  相似文献   

20.
MicroRNA调控造血干细胞发育   总被引:1,自引:0,他引:1  
造血干细胞是目前研究最为深入的成体干细胞,是极富应用前景的研究领域,然而其维持自我更新以及多向分化潜能的分子机制尚不明.MicroRNA (miRNA)是一类崭新的调控性非编码小分子RNA,在监控生物体个体发育和细胞增殖、分化进程中起着重要作用.miRNA参与包括胚胎干细胞和多种成体干细胞的发育进程,人类造血干细胞及其发育过程中也存在特征性miRNA表达谱,参与调控造血干细胞发育进程,以miRNA为分子靶点的防治造血功能低下疾患的研究具有广阔的应用前景.  相似文献   

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