Notch

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  • 文章类型: Journal Article
    Notch是一个保守的细胞信号通路,参与精子发生调控。这项研究首先评估了存在,本地化模式,公牛精子Notch蛋白的获取起源及其与顶体反应的关系。蛋白质印迹分析检测到射精公牛精子中的所有Notch蛋白,免疫染色描述了它们的特定精子定位。从不同节段的精子回收表明,Notch蛋白具有睾丸起源(NOTCH1,NOTCH2,DLL4),在精子成熟过程中沿着附睾转运(NOTCH3,DLL3,JAGGED1-2)顺序获得,或射精后(DLL1,NOTCH4)。睾丸NOTCH2在所有生殖细胞系中普遍表达,而DLL4在高尔基体期间在圆形和细长的精子细胞中表达,Cap,顶体期和成熟期。体外自发和诱导的精子顶体反应诱导了NOTCH2,DLL4和JAGGED1的一致精子区域重新定位,并且这些重新定位模式与精子顶体状态显着相关。NOTCH2和JAGGED1从头部顶端迁移到赤道后区域,而DLL4与顶体一起丢失,证明NOTCH2和JAGGED1的精子空间再分布与顶体反应的发生有关,而DLL4丢失与AR完成有关。总的来说,结果提示在公牛精子顶体睾丸发育中具有相关的Notch作用,附睾成熟和顶体反应。
    Notch is a conserved cell-signaling pathway involved in spermatogenesis regulation. This study firstly evaluated the presence, localization patterns, acquisition origin and relation to acrosome reaction of Notch proteins in bull sperm. Western Blot analysis detected all Notch proteins in ejaculated bull sperm, and immunostaining described their specific sperm localization. Recovery of sperm from different segments showed that Notch proteins have testicular origin (NOTCH1, NOTCH2, DLL4), are sequentially acquired during sperm maturation along epididymal transit (NOTCH3, DLL3, JAGGED1-2), or post-ejaculation (DLL1, NOTCH4). Testis NOTCH2 is ubiquitously expressed in all germ-cell lines, whereas DLL4 is expressed in round and elongated spermatids during the Golgi, Cap, Acrosome and Maturation phases. In vitro spontaneous and induced sperm acrosome reaction induce consistent sperm regional relocation of NOTCH2, DLL4 and JAGGED1, and these relocation patterns are significantly associated to sperm acrosome status. NOTCH2 and JAGGED1 are relocated from the head apical to the post-equatorial regions, whereas DLL4 is lost along with the acrosome, evidencing that sperm spatial redistribution of NOTCH2 and JAGGED1 is linked to acrosome reaction onset, whereas DLL4 loss is linked to AR completion. Overall, results prompt for a relevant Notch role in bull sperm acrosome testicular development, epididymal maturation and acrosome reaction.
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  • 文章类型: Journal Article
    暴露于电离辐射与人类和实验小鼠的骨髓和淋巴谱系中血液系统恶性肿瘤的风险增加有关。鉴于大量证据表明辐射暴露与血液系统恶性肿瘤的风险有关,必须深入了解在辐射暴露和完全转化的恶性细胞出现之间的潜伏期中细胞和分子变化的潜在机制。在辐射和癌症生物学领域中广泛用于研究由辐射暴露诱导的血液恶性肿瘤的一种实验模型是辐射诱导的胸腺淋巴瘤的小鼠模型。小鼠辐射诱导的胸腺淋巴瘤主要是由Notch信号的异常激活引起的,经常发生在人类前体T细胞淋巴母细胞淋巴瘤(T-LBL)和T细胞淋巴母细胞白血病(T-ALL)中。这里,我们总结了阐明癌症发生的细胞自主和非细胞自主机制的文献,programming,和小鼠全身照射(TBI)后胸腺的恶性转化。
    Exposure to ionizing radiation is associated with an increased risk of hematologic malignancies in myeloid and lymphoid lineages in humans and experimental mice. Given that substantial evidence links radiation exposure with the risk of hematologic malignancies, it is imperative to deeply understand the mechanisms underlying cellular and molecular changes during the latency period between radiation exposure and the emergence of fully transformed malignant cells. One experimental model widely used in the field of radiation and cancer biology to study hematologic malignancies induced by radiation exposure is mouse models of radiation-induced thymic lymphoma. Murine radiation-induced thymic lymphoma is primarily driven by aberrant activation of Notch signaling, which occurs frequently in human precursor T-cell lymphoblastic lymphoma (T-LBL) and T-cell lymphoblastic leukemia (T-ALL). Here, we summarize the literature elucidating cell-autonomous and non-cell-autonomous mechanisms underlying cancer initiation, progression, and malignant transformation in the thymus following total-body irradiation (TBI) in mice.
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  • 文章类型: Journal Article
    心肌细胞是构成心脏并赋予心脏跳动活动的最大细胞类型。心肌细胞的适当分化依赖于来自影响心肌细胞特异性基因表达程序的几个信号通路的分化线索的有效传递和感知。信号通路还介导细胞间通讯以促进适当的心肌细胞分化。我们综述了参与心肌细胞分化的主要信号通路,包括BMP,缺口,索尼克刺猬,河马,和Wnt信号通路。此外,我们强调了不同心肌细胞系之间的差异,以及这些信号通路在心肌细胞从干细胞分化中的应用。最后,最后,我们讨论了关于心肌细胞体外分化的悬而未决的问题和目前的知识空白,并提出了新的研究途径来填补这些空白。
    Cardiomyocytes are the largest cell type that make up the heart and confer beating activity to the heart. The proper differentiation of cardiomyocytes relies on the efficient transmission and perception of differentiation cues from several signaling pathways that influence cardiomyocyte-specific gene expression programs. Signaling pathways also mediate intercellular communications to promote proper cardiomyocyte differentiation. We have reviewed the major signaling pathways involved in cardiomyocyte differentiation, including the BMP, Notch, sonic hedgehog, Hippo, and Wnt signaling pathways. Additionally, we highlight the differences between different cardiomyocyte cell lines and the use of these signaling pathways in the differentiation of cardiomyocytes from stem cells. Finally, we conclude by discussing open questions and current gaps in knowledge about the in vitro differentiation of cardiomyocytes and propose new avenues of research to fill those gaps.
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  • 文章类型: Journal Article
    HER2阳性乳腺癌,以过表达HER2水平为特征,与侵袭性肿瘤行为和不良预后有关。曲妥珠单抗是一种标准治疗方法;然而,大约50%的患者在一年内出现耐药性。这项研究调查了ITGβ3在HER2阳性乳腺癌细胞系(HCC1599和SKBR3)中促进干性和耐药性的作用。研究结果表明,长期暴露于曲妥珠单抗会上调干细胞标志物(SOX2,OCT4,KLF4,NANOG,SALL4,ALDH,BMI1,Nestin,武藏1,TIM3,CXCR4)。鉴于RGD结合整合素在耐药性和干性中的作用,我们专门研究了它们对抗性细胞的影响。ITGβ3的过表达增强了这些干细胞标志物的表达,而沉默ITGβ3会降低它们的表达,提示ITGβ3在维持干性和抗性中的主要作用。进一步的分析表明,ITGβ3激活Notch信号通路,以调节干细胞维持而闻名。曲妥珠单抗和西仑吉肽的组合,一种整合素抑制剂,显著降低抗性细胞中干细胞标志物的表达,表明了克服耐药性的潜在治疗策略。这些结果确定了ITGβ3在HER2阳性乳腺癌中通过Notch信号介导干性和曲妥珠单抗耐药性中的重要性。提供新的方法来提高治疗效果。
    HER2-positive breast cancer, characterised by overexpressed HER2 levels, is associated with aggressive tumour behaviour and poor prognosis. Trastuzumab is a standard treatment; however, approximately 50% of patients develop resistance within one year. This study investigates the role of ITGβ3 in promoting stemness and resistance in HER2-positive breast cancer cell lines (HCC1599 and SKBR3). The findings demonstrate that chronic exposure to trastuzumab upregulates stem cell markers (SOX2, OCT4, KLF4, NANOG, SALL4, ALDH, BMI1, Nestin, Musashi 1, TIM3, CXCR4). Given the documented role of RGD-binding integrins in drug resistance and stemness, we specifically investigated their impact on resistant cells. Overexpression of ITGβ3 enhances the expression of these stem cell markers, while silencing ITGβ3 reduces their expression, suggesting a major role for ITGβ3 in maintaining stemness and resistance. Further analysis reveals that ITGβ3 activates the Notch signalling pathway, known for regulating stem cell maintenance. The combination of trastuzumab and cilengitide, an integrin inhibitor, significantly decreases the expression of stem cell markers in resistant cells, indicating a potential therapeutic strategy to overcome resistance. These results identify the importance of ITGβ3 in mediating stemness and trastuzumab resistance through Notch signalling in HER2-positive breast cancer, offering new approaches for enhancing treatment efficacy.
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  • 文章类型: Journal Article
    Notch蛋白经历配体诱导的蛋白水解以释放通过调节转录影响广泛的细胞过程的核效应物。尽管经过多年的研究,然而,Notch如何诱导其靶基因的转录仍不清楚。这里,我们使用新生RNA和染色质可及性的基因组测定,全面检查了人类Notch1在激活过程中的反应。这些数据表明,Notch主要通过释放暂停的RNA聚合酶II(RNAPII)诱导靶基因转录,与流行的模型相反,Notch通过促进染色质可及性起作用。的确,我们发现开放染色质是在Notch信号传导之前在Notch反应调节元件上建立的,通过SWI/SNF介导的重塑。缺口激活,然而,在这些基因座处没有引起进一步的染色质开放。一起,这些研究表明,对Notch信号传导的核反应是由信号激活时预先存在的染色质状态和RNAPII分布决定的.
    Notch proteins undergo ligand-induced proteolysis to release a nuclear effector that influences a wide range of cellular processes by regulating transcription. Despite years of study, however, how Notch induces the transcription of its target genes remains unclear. Here, we comprehensively examined the response to human Notch1 across a time course of activation using genomic assays of nascent RNA and chromatin accessibility. These data revealed that Notch induces target gene transcription primarily by releasing paused RNA polymerase II (RNAPII), in contrast to prevailing models suggesting that Notch acts by promoting chromatin accessibility. Indeed, we found that open chromatin is established at Notch-responsive regulatory elements prior to Notch signaling, through SWI/SNF-mediated remodeling. Notch activation, however, elicited no further chromatin opening at these loci. Together, these studies reveal that the nuclear response to Notch signaling is dictated by the pre-existing chromatin state and RNAPII distribution at time of signal activation.
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  • 文章类型: Journal Article
    瓣膜形成的过程是复杂的过程,其涉及在精确时间的各种途径之间的复杂的相互作用。虽然我们还没有完全阐明导致正常瓣膜形成的分子途径,我们已经确定了这个过程中的几个主要参与者。我们现在能够暗示TGF-β,BMP,和NOTCH怀疑三尖瓣闭锁(TA),以及它们的下游目标:NKX2-5、TBX5、NFATC1、GATA4和SOX9。我们知道TGF-β和BMP途径在SMAD4分子上汇聚,我们认为这种分子在将两种途径与TA联系起来方面起着非常重要的作用。同样,我们研究了NOTCH途径,并将HEY2确定为该途径与TA之间的潜在联系.与TA有关的另一种转录因子是NFATC1。虽然存在几种小鼠模型,包括部分TA异常作为其表型,没有真正的小鼠模型可以说代表TA。弥合这一差距肯定会阐明这一复杂的分子途径,并有助于更好地了解疾病过程。
    The process of valve formation is a complex process that involves intricate interplay between various pathways at precise times. Although we have not completely elucidated the molecular pathways that lead to normal valve formation, we have identified a few major players in this process. We are now able to implicate TGF-ß, BMP, and NOTCH as suspects in tricuspid atresia (TA), as well as their downstream targets: NKX2-5, TBX5, NFATC1, GATA4, and SOX9. We know that the TGF-ß and the BMP pathways converge on the SMAD4 molecule, and we believe that this molecule plays a very important role to tie both pathways to TA. Similarly, we look at the NOTCH pathway and identify the HEY2 as a potential link between this pathway and TA. Another transcription factor that has been implicated in TA is NFATC1. While several mouse models exist that include part of the TA abnormality as their phenotype, no true mouse model can be said to represent TA. Bridging this gap will surely shed light on this complex molecular pathway and allow for better understanding of the disease process.
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  • 文章类型: Journal Article
    导致急性巨核细胞白血病(AMKL)的遗传病变尚未完全阐明。为了寻找AMKL的遗传改变,我们在34个AMKL患者样本和8个AMKL细胞系中进行了靶向深度测序,并在NOTCH通路中检测到频繁的基因突变,除了先前报道的GATA-1和JAK-STAT途径的交替。药理学和遗传学NOTCH激活,但不是抑制,在采用患者来源的异种移植模型的体外和体内测定中,显著抑制AMKL细胞增殖。这些结果表明,NOTCH失活是AMKL白血病发生的基础,NOTCH活化具有AMKL治疗应用的潜力。
    The genetic lesions that drive acute megakaryoblastic leukemia (AMKL) have not been fully elucidated. To search for genetic alterations in AMKL, we performed targeted deep sequencing in 34 AMKL patient samples and 8 AMKL cell lines and detected frequent genetic mutations in the NOTCH pathway in addition to previously reported alterations in GATA-1 and the JAK-STAT pathway. Pharmacological and genetic NOTCH activation, but not inhibition, significantly suppressed AMKL cell proliferation in both in vitro and in vivo assays employing a patient-derived xenograft model. These results suggest that NOTCH inactivation underlies AMKL leukemogenesis. and NOTCH activation holds the potential for therapeutic application in AMKL.
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  • 文章类型: Journal Article
    人T细胞白血病病毒1型(HTLV-I)是成人T细胞白血病(ATL)的病原体。突变分析表明,肿瘤抑制因子,F-box和WD重复结构域含有7(FBXW7/FBW7/CDC4),在原发性ATL患者中突变。然而,即使没有基因突变,FBXW7底物在ATL细胞中稳定,建议额外的机制可以阻止FBXW7功能。这里,我们报告说,病毒癌蛋白税抑制FBXW7的活性,导致激活的Notch细胞内结构域的稳定,c-MYC,细胞周期蛋白E,和髓样细胞白血病序列1(BCL2相关)(Mcl-1)。机械上,我们证明了税收在原子核中直接与FBXW7结合,与FBXW7的结合有效竞争其他靶标,导致FBXW7底物的泛素化和降解减少。为了支持税收的核作用,发现核因子κB亚基2(NFκB2/p100)的不可降解形式可将Tax离域到细胞质中,从而防止税收与FBXW7的相互作用和税收介导的FBXW7抑制。最后,我们描述了一个不能与FBXW7相互作用,不能阻断FBXW7肿瘤抑制功能的Tax突变体,无法有效转化成纤维细胞。这些结果表明,HTLV-ITax可以抑制FBXW7功能,而不会发生基因突变以促进致癌状态。这些结果表明,在细胞转化过程的早期阶段,Tax介导的FBXW7抑制可能至关重要。
    目的:F-box和WD重复结构域含有7(FBXW7),人类癌症的关键肿瘤抑制剂,经常发生突变或表观遗传抑制。FBXW7功能的丧失与致癌因子如CyclinE的稳定和表达增加有关,c-Myc,Mcl-1mTOR,Jun,还有Notch.在这项研究中,我们证明,人类逆转录病毒人类T细胞白血病病毒1型癌蛋白Tax与FBXW7直接相互作用,有效地超越了与FBXW7结合的其他靶标,导致FBXW7细胞底物的泛素化和降解减少.我们进一步证明,无法与FBXW7相互作用并使其失活的Tax突变体失去了转化原代成纤维细胞的能力。总的来说,我们的结果描述了人类肿瘤病毒促进细胞转化的新机制。
    Human T-cell leukemia virus type 1 (HTLV-I) is the etiological agent of adult T-cell leukemia (ATL). Mutational analysis has demonstrated that the tumor suppressor, F-box and WD repeat domain containing 7 (FBXW7/FBW7/CDC4), is mutated in primary ATL patients. However, even in the absence of genetic mutations, FBXW7 substrates are stabilized in ATL cells, suggesting additional mechanisms can prevent FBXW7 functions. Here, we report that the viral oncoprotein Tax represses FBXW7 activity, resulting in the stabilization of activated Notch intracellular domain, c-MYC, Cyclin E, and myeloid cell leukemia sequence 1 (BCL2-related) (Mcl-1). Mechanistically, we demonstrate that Tax directly binds to FBXW7 in the nucleus, effectively outcompeting other targets for binding to FBXW7, resulting in decreased ubiquitination and degradation of FBXW7 substrates. In support of the nuclear role of Tax, a non-degradable form of the nuclear factor kappa B subunit 2 (NFκB2/p100) was found to delocalize Tax to the cytoplasm, thereby preventing Tax interactions with FBXW7 and Tax-mediated inhibition of FBXW7. Finally, we characterize a Tax mutant that is unable to interact with FBXW7, unable to block FBXW7 tumor suppressor functions, and unable to effectively transform fibroblasts. These results demonstrate that HTLV-I Tax can inhibit FBXW7 functions without genetic mutations to promote an oncogenic state. These results suggest that Tax-mediated inhibition of FBXW7 is likely critical during the early stages of the cellular transformation process.
    OBJECTIVE: F-box and WD repeat domain containing 7 (FBXW7), a critical tumor suppressor of human cancers, is frequently mutated or epigenetically suppressed. Loss of FBXW7 functions is associated with stabilization and increased expression of oncogenic factors such as Cyclin E, c-Myc, Mcl-1, mTOR, Jun, and Notch. In this study, we demonstrate that the human retrovirus human T-cell leukemia virus type 1 oncoprotein Tax directly interacts with FBXW7, effectively outcompeting other targets for binding to FBXW7, resulting in decreased ubiquitination and degradation of FBXW7 cellular substrates. We further demonstrate that a Tax mutant unable to interact with and inactivate FBXW7 loses its ability to transform primary fibroblasts. Collectively, our results describe a novel mechanism used by a human tumor virus to promote cellular transformation.
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  • 文章类型: Journal Article
    小脑颗粒神经元祖细胞(GNP)起源于上菱形唇(URL),发育缺陷会导致人类疾病的发芽生态位。T细胞因子(TCF)反应性和Notch依赖性是神经干细胞自我更新的标志。TCF活性与转录本一起编码proneumal基因阻遏毛状和分裂增强子(hes/hey),在URL中检测到。然而,他们的功能和监管模式是未解的。在这里,我们建立了两栖动物作为研究脊椎动物URL发展的相关模型。两栖动物的长期URL是Tcf活跃的,而外部颗粒层(EGL)是非增殖型的,表达hes4/5基因。使用功能和转录组学方法,我们证明了Tcf活动对于URL出现和维护是必要的。我们确定转录因子Barhl1控制GNP从URL退出,部分通过直接Tcf抑制起作用。对Barhl1靶基因的鉴定认为,除了Tcf,Barhl1独立于Notch信号传导抑制hes5基因的转录。在羊膜动物中的观察表明Barhl通过TCF和hes/hey基因的共调节在维持URL/EGL中的保守作用。
    Cerebellar granule neuron progenitors (GNP) originate from the upper rhombic lip (URL), a germinative niche whose developmental defects produce human diseases. T-Cell Factors (TCF) responsiveness and Notch dependence are hallmarks of self-renewal in neural stem cells. TCF activity together with transcripts coding for proneural genes repressors hairy and enhancer of split (hes/hey), are detected in the URL. However, their functions and regulatory modes are undeciphered. Here we established amphibian as a pertinent model to study vertebrate URL development. Amphibians long-lived URL is Tcf active, while the External Granular layer (EGL) is non-proliferative and expresses hes4/5 genes. Using functional and transcriptomic approaches, we show that Tcf activity is necessary for URL emergence and maintenance. We establish that the transcription factor Barhl1 controls GNP exit from the URL acting partly through direct Tcf inhibition. Identification of Barhl1 target genes argues that besides Tcf, Barhl1 inhibits transcription of hes5 genes independently of Notch signaling. Observations in amniotes suggest a conserved role of a Barhl in maintenance of the URL/EGL via coregulation of TCF and hes/hey genes.
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  • 文章类型: Letter
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