Post-Transcriptional Regulation of Interleukin-7 Receptor Expression
Post-Transcriptional Regulation of Interleukin-7 Receptor Expression
批准号:
10486795
负责人:
Jung-Hyun Park
金额:
$133.22万
依托单位国家:
美国
项目类别:
财政年份:
--
资助国家:
美国
项目状态:
未结题
起止时间:
至
关键词:
1-Phosphatidylinositol 3-KinaseAffinityAlternative SplicingAwarenessBindingBiologicalCD4 Positive T LymphocytesCell Differentiation processCell SurvivalCell physiologyCell surfaceCellsCellular ImmunologyChromatin Remodeling FactorCloningCuesCytokine ReceptorsCytokine SignalingDevelopmentDown-RegulationEpigenetic ProcessEventExclusionExonsExtracellular DomainFOXP3 geneFamilyGFI1 geneGenerationsGenetic TranscriptionGoalsHomeostasisHumanIL7 geneImmature LymphocyteImmune systemImmunityImmunologicsInterleukin 2 Receptor GammaInterleukin 7 ReceptorInterleukin-15Interleukin-17Interleukin-2Interleukin-4Interleukin-9IntronsInvestigationKnockout MiceLigand BindingLigandsLymphocyteMaintenanceMature T-LymphocyteMembraneMessenger RNAMetabolicModelingMolecularMolecular ImmunologyMusNuclearOrphanPathway interactionsPeripheralPlayPost-Transcriptional RegulationPost-Translational Protein ProcessingProcessProductionProtein IsoformsProteinsRNA SplicingRUNX3 geneReceptor SignalingRecyclingRegulationRegulatory T-LymphocyteReportingResourcesRestRoleSeriesSignal TransductionStat5 proteinSurfaceT cell differentiationT-Cell ActivationT-Cell DevelopmentT-LymphocyteTestingThymus GlandTransgenic MiceTransmembrane DomainWorkbaseconditional knockoutcytokinegenomic locusin vivointerestmRNA ExpressionmRNA Precursoroverexpressionpreferencereceptorreceptor expressionthymocytetranscription factorvirtual
中文摘要
我们以前确定GC和IL-7 Ra前mRNA的选择性剪接是控制发育中的胸腺细胞和活化的T细胞中这些细胞因子受体丰度的主要机制。我们发现TCR刺激可以上调gc的选择性剪接,我们还发现未成熟胸腺细胞的胸腺分化与不同数量的选择性剪接gc前mRNA相关。然而,在IL-7 Ra的情况下,在T细胞活化和分化后如何控制可变剪接尚不清楚。在人类中,先前已经报道了IL-7 Ra前mRNA的选择性剪接,但是直到我们最近的研究(Won HY等人,2020,Cellular & Molecular Immunology),小鼠中存在选择性剪接的IL-7 Ra尚不清楚。在人T细胞中,IL-7 Ra前mRNA通过省略外显子6而选择性剪接,外显子6编码整个跨膜区。从小鼠T细胞克隆IL-7 Ra mRNA种类表明,小鼠免疫系统利用与人T细胞不同的机制,使得内含子保留而不是外显子排除产生IL-7 Ra mRNA的剪接同种型。这是否是产生IL-7 Ra可变剪接产物的唯一机制仍有待研究。尽管如此,我们也意识到可变剪接产物可能导致可溶性IL-7 Ra蛋白的产生,并且我们的目的是检查这种可溶性IL-7 Ra蛋白是否参与控制T细胞免疫和T细胞分化。在我们研究可溶性IL-7 Ra蛋白的生物学效应的过程中,我们先前发现可溶性IL-7 Ra蛋白可以在不存在配体的情况下与gc蛋白预缔合。我们的工作表明,gc和IL-7 Ra蛋白的这种直接相互作用不是IL-7 Ra所独有的,而且对于gc家族的其他细胞因子专有受体(如IL-2 Rb)也观察到。这些细胞因子受体对之间的结合亲和力的SPR分析揭示了与IL-2 Rb/gc缔合相比,IL-7 Ra/gc缔合的显著偏好。在这种情况下,我们预测所有gc分子将被IL-7 Ra螯合,从而限制其对其他gc家族受体(包括IL-2 Rb)的可用性。细胞因子受体的这种预缔合模型提出了细胞因子信号传导的新控制层,我们预测其在T细胞活化和分化期间影响细胞因子信号传导。为了验证这一假设,我们首先使用荧光珠来定量T细胞的细胞表面上的gc分子的绝对数量。我们发现IL-7 Ra蛋白在静息的幼稚CD 4 T细胞表面上以4:1的比例超过gc蛋白。另一方面,其他gc细胞因子受体,如IL-4 Ra或IL-2 Rb,表达的数量明显低于gc。这些结果证明gc蛋白的可用性是有限的,并且由于gc的量有限,IL-7信号传导在CD 4 T细胞中被削减。这些发现进一步表明,在IL-7 Ra蛋白的存在下,通过IL-7以外的细胞因子(例如IL-2和IL-4)的信号传导将受到严重限制。为了直接证明IL-7 Ra可以作为IL-2或IL-4信号传导的负调节剂,我们接下来分析了Foxp 3 + Treg细胞中的细胞因子受体信号传导。虽然大多数T细胞依赖于IL-7存活,但已经确定Foxp 3 + Treg细胞需要IL-2来发育和体内平衡。重要的是,Treg细胞表达独特低量的IL-7 Ra,但尚不知道为什么会是这种情况,以及是否需要抑制IL-7 Ra表达以实现Foxp 3 + Treg细胞功能。在我们最近的研究中(Waickman AT等人,2020,iScience),我们现在已经报道了Foxp 3是IL-7 Ra表达的转录抑制因子,并且IL-7 Ra下调对于在Foxp 3 + Treg细胞中最大化IL-2信号传导是必要的。具体地,IL-7 Ra的胞外结构域的过表达诱导gc蛋白与IL-7 Ra的预缔合和隔离,从而显著抑制Foxp 3 + Treg细胞中的IL-2信号传导。我们发现,这种GC螯合也可以在产生IL-17的Th 17细胞中观察到。在此,我们发现IL-7 Ra的缺失增加了gc的可用性,而IL-7 Ra的过表达显著地限制了gc的可用性,使得IL-7 Ra的丰度控制了Th 17细胞分化的效率。总的来说,我们的结果揭示了IL-7 R和IL-2 R的先前未被认识到的串扰,其中IL-7 Ra的丰度控制IL-2 R的信号传导。最后,我们已经启动了一系列新的研究,其中我们将我们的研究范围扩展到IL-7 Ra表达的表观遗传方面,与我们目前的研究平行。我们最近确定了染色质重塑因子Ikaros(Ikfz 1)作为一个强有力的候选人,以控制IL-7 Ra基因位点的可及性和控制IL-7 Ra的表达在胸腺中的早期T细胞发育和外周T细胞的生存/稳态。为了进一步了解Ikaros如何促进细胞因子受体的调节,特别是IL-7 Ra的表达,我们已经产生了一系列的Ikfz 1条件性敲除小鼠,也产生了Ikfz 1转基因小鼠。目前正在研究在IL-7 R表达的背景下分析这些小鼠的T细胞发育和分化。
英文摘要
We previously identified alternative splicing of gc and IL-7Ra pre-mRNAs as a major mechanism to control the abundance of these cytokine receptors in developing thymocytes and in activated T cells. We found that TCR stimulation can upregulate alternative splicing of gc, and we also identified that thymic differentiation of immature thymocytes is associated with distinct amounts of alternatively spliced gc pre-mRNA. In case of IL-7Ra, however, it is less clear how alternative splicing is controlled upon T cell activation and differentiation. In humans, the alternative splicing of IL-7Ra pre-mRNA had been previously reported, but until our recent study (Won HY et al., 2020, Cellular & Molecular Immunology), the existence of alternatively spliced IL-7Ra in mice had not been known. In human T cells, IL-7Ra pre-mRNA is alternatively spliced by omitting exon 6, which encodes the entire transmembrane region. The cloning of IL-7Ra mRNA species from mouse T cells showed that the mouse immune system utilized a distinct mechanism from human T cells, so that intron-retention, instead of exon exclusion, generates splice isoforms of IL-7Ra mRNA. Whether this is the only mechanism to generate alternative splice products of IL-7Ra remains to be examined. Nonetheless, we are also aware of the fact that the alternative splice product will possibly result in the production of soluble IL-7Ra proteins, and we aim to examine whether such soluble IL-7Ra proteins are involved in controlling T cell immunity and T cell differentiation. In course of our study examining the biological effects of soluble IL-7Ra proteins, we previously found that soluble IL-7Ra proteins can pre-associate with gc proteins in the absence of ligands. Our work demonstrated that such direct interaction of gc and IL-7Ra proteins is not unique to the IL-7Ra but also observed for other cytokine proprietary receptors of the gc family, such as the IL-2Rb. SPR analysis of the binding affinities between these cytokine receptor pairs revealed a dramatic preference for IL-7Ra/gc association compared to IL-2Rb/gc association. Under this scenario, we predicted that all gc molecules would be sequestered by IL-7Ra, thus limiting its availability for other gc family receptors, including IL-2Rb. Such a pre-association model of cytokine receptors puts forward a new layer of control in cytokine signaling, which we predicted to impact cytokine signaling during T cell activation and differentiation. To test this hypothesis, we first used fluorescent beads to quantify the absolute number of gc molecules on cell surface of T cells. We found that IL-7Ra proteins outnumbered gc proteins at a ratio of four to one on the surface of resting naive CD4 T cells. On the other hand, other gc cytokine receptors, such as IL-4Ra or IL-2Rb, were expressed at significantly lower numbers than gc. These results documented that the availability of gc proteins is limited, and that IL-7 signaling is curtailed in CD4 T cells because of the limited amounts of gc. These findings further suggested that signaling by cytokines other than IL-7, such as IL-2 and IL-4, would be heavily constrained in the presence of IL-7Ra proteins. To directly demonstrate that IL-7Ra can act as a negative regulator of IL-2 or IL-4 signaling, we next analyzed cytokine receptor signaling in Foxp3+ Treg cells. While most T cells depend on IL-7 for their survival, it is well established that Foxp3+ Treg cells require IL-2 for their development and homeostasis. Importantly, Treg cells express uniquely low amounts of IL-7Ra but it has not been known why this would be the case and whether it is necessary to suppress IL-7Ra expression for Foxp3+ Treg cell function. In our recent study (Waickman AT et al., 2020, iScience), we have now reported that Foxp3 is a transcriptional suppressor of IL-7Ra expression, and that IL-7Ra downregulation is necessary to maximize IL-2 signaling in Foxp3+ Treg cells. Specifically, overexpression of the extracellular domain of IL-7Ra induced the pre-association and sequestration of gc proteins with IL-7Ra, thus dramatically inhibiting IL-2 signaling in Foxp3+ Treg cells. We found that such gc sequestration can be also observed in the generation of IL-17-producing Th17 cells. Here, we found that the deletion of IL-7Ra increased the availability of gc while overexpression of IL-7Ra significantly constrained gc availability so that the abundance of IL-7Ra controlled the efficiency of Th17 cell differentiation. Collectively, our results unveiled a previously unappreciated crosstalk of IL-7R and IL-2R where the abundance of IL-7Ra controls the signaling of IL-2R. Finally, we have initiated a series of new studies where we expanded the scope of our studies to the epigenetic aspect of IL-7Ra expression, in parallel to our current studies. We recently identified the chromatin remodeling factor Ikaros (Ikfz1) as a strong candidate to control the accessibility of IL-7Ra gene locus and to control IL-7Ra expression during the early T cell development in the thymus and in the survival/homeostasis of peripheral T cells. To further understand how Ikaros contributes to cytokine receptor regulation in general and specifically to IL-7Ra expression, we have generated a series of Ikfz1-conditional knock out mice, and also generated Ikfz1 transgenic mice. Analyzing the T cell development and differentiation of these mice in context of IL-7R expression is currently under investigation.
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Immune Regulatory Roles of Suppressor Of Cytokine Signaling (SOCS) Molecules
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批准号:8938017
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项目类别:
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资助金额:$28.79万
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财政年份:--
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负责人:Jung-Hyun Park
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依托单位:
Immune Regulatory Roles of Suppressor Of Cytokine Signaling (SOCS) Molecules
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批准号:8349404
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项目类别:
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资助金额:$33.26万
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财政年份:--
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负责人:Jung-Hyun Park
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依托单位:
Post-Transcriptional Regulation of Interleukin-7 Receptor Expression
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批准号:10702510
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项目类别:
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资助金额:$138.37万
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负责人:Jung-Hyun Park
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依托单位:
Immune Regulatory Roles of Suppressor Of Cytokine Signaling (SOCS) Molecules
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批准号:8157707
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项目类别:
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资助金额:$24.82万
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负责人:Jung-Hyun Park
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依托单位:
Post-Transcriptional Regulation of Interleukin-7 Receptor Expression
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批准号:8157706
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项目类别:
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资助金额:$57.92万
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负责人:Jung-Hyun Park
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依托单位:
Post-Transcriptional Regulation of Interleukin-7 Receptor Expression
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批准号:7966233
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资助金额:$55.91万
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负责人:Jung-Hyun Park
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依托单位:
Post-Transcriptional Regulation of Interleukin-7 Receptor Expression
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批准号:8763405
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资助金额:$60.95万
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负责人:Jung-Hyun Park
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依托单位:
Post-Transcriptional Regulation of Interleukin-7 Receptor Expression
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批准号:8938016
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资助金额:$67.17万
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负责人:Jung-Hyun Park
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依托单位:
Immune Regulatory Roles of Suppressor Of Cytokine Signaling (SOCS) Molecules
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批准号:10702511
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资助金额:$59.3万
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负责人:Jung-Hyun Park
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依托单位:
Immune Regulatory Roles of Suppressor Of Cytokine Signaling (SOCS) Molecules
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批准号:10486796
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项目类别:
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资助金额:$57.09万
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负责人:Jung-Hyun Park
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依托单位:
Post-Transcriptional Regulation of Interleukin-7 Receptor Expression
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批准号:10014580
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项目类别:
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资助金额:$104.61万
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负责人:Jung-Hyun Park
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依托单位:
Post-Transcriptional Regulation of Interleukin-7 Receptor Expression
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批准号:10926167
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项目类别:
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资助金额:$132.67万
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负责人:Jung-Hyun Park
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依托单位:
Immune Regulatory Roles of Suppressor Of Cytokine Signaling (SOCS) Molecules
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批准号:9779837
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项目类别:
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资助金额:$37.08万
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负责人:Jung-Hyun Park
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依托单位:
Immune Regulatory Roles of Suppressor Of Cytokine Signaling (SOCS) Molecules
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批准号:10926168
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项目类别:
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资助金额:$56.86万
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负责人:Jung-Hyun Park
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依托单位:
Immune Regulatory Roles of Suppressor Of Cytokine Signaling (SOCS) Molecules
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批准号:10262270
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项目类别:
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资助金额:$52.6万
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负责人:Jung-Hyun Park
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依托单位:
Immune Regulatory Roles of Suppressor Of Cytokine Signaling (SOCS) Molecules
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批准号:8763406
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资助金额:$26.12万
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负责人:Jung-Hyun Park
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依托单位:
Post-Transcriptional Regulation of Interleukin-7 Receptor Expression
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批准号:10262269
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资助金额:$122.73万
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负责人:Jung-Hyun Park
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依托单位:
Immune Regulatory Roles of Suppressor Of Cytokine Signaling (SOCS) Molecules
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批准号:10014582
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项目类别:
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资助金额:$44.83万
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负责人:Jung-Hyun Park
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依托单位:
Post-Transcriptional Regulation of Interleukin-7 Receptor Expression
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批准号:8553047
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项目类别:
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资助金额:$75.29万
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财政年份:--
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负责人:Jung-Hyun Park
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依托单位:
Post-Transcriptional Regulation of Interleukin-7 Receptor Expression
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批准号:9153825
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项目类别:
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资助金额:$69.91万
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负责人:Jung-Hyun Park
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依托单位:
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