Runx2 Organizes Transcriptional Complexes in Nuclear Microenvironments to Support
Runx2 在核微环境中组织转录复合物以支持
基本信息
- 批准号:8601049
- 负责人:
- 金额:$ 24.04万
- 依托单位:
- 依托单位国家:美国
- 项目类别:
- 财政年份:2013
- 资助国家:美国
- 起止时间:2013-02-01 至 2015-01-31
- 项目状态:已结题
- 来源:
- 关键词:BiochemicalBiologicalBone DiseasesBone MatrixBreastBreast Cancer CellCancer PatientCell NucleusCellsCitiesCodeCollaborationsComplementary DNAComplexCountryCountyCoupledDiseaseDisease ProgressionDistalEpithelial CellsErinaceidaeEventFatty acid glycerol estersGene ExpressionGene Expression RegulationGene TargetingGenesGeneticHumanIn SituIn VitroIntegrinsLeadLocationMCF7 cellMalignant neoplasm of prostateMammary NeoplasmsMammary glandMassachusettsMediatingMediator of activation proteinMetalloproteasesMetastatic Neoplasm to the BoneMolecularMolecular ProfilingMouse Mammary Tumor VirusMutationNamesNeoplasm MetastasisNon-MalignantNormal CellNuclearNuclear MatrixNuclear Matrix-Associated ProteinsNuclear StructureOncogenicOsteogenesisOsteolyticOutcomePatientsPerformancePolyomavirusPropertyProstatic NeoplasmsProteinsProteomicsProvinceRunx2 proteinSamplingScaffolding ProteinSeverity of illnessSignal PathwaySignal TransductionSiteStagingSupporting CellTranscription CoactivatorUniversitiesVascular Endothelial Growth FactorsViral Tumor AntigensWorkbonecancer cellcohortdeep sequencinggenetic regulatory proteininsightinter-alpha-inhibitormalignant breast neoplasmmedical schoolsmouse modelmutantneoplastic cellnovelparathyroid hormone-related proteinpreventresponsetranscription factortumortumor growthtumor microenvironmentvalidation studies
项目摘要
The master transcriptional regulator Runx2 is essential for osteogenesis and has multifunctional molecular
and biological. Runx2 is properties as a scaffolding protein that interacts with distinct co-regulatory factors
and is targeted by a unique Runx2 nuclear matrix targeting signal to subnuclear domains. Runx2 is highly
expressed in tumor cells that metastasize to bone, present at trace levels in non-metastatic malignant cells
and nearly absent from normal mammary epithelial cells. We have proven thatthe unique targeting function
of Runx2 is an essential for its activity which promotes tumor growth in bone and osteolytic bone disease.
We have shown that Runx2 is a transcriptional activator of many genes involved in early and late events of
metastasis and mediates signaling pathways that contribute to tumor growth. Therefore, we hypothesize
that Runx2 regulates a cohort of genes abnormally activated or repressed genes in highly metastatic breast
cancer cells in subnuclear domains of tumor cells in mammary gland that will promote metastasis to distal
sites. Importantly, we have established that loss of Runx2 fundion in tumor cells (by Runx2 shRNAs and a
subnuclear targeting deficient (STD) mutation) reduces tumor growth in the mammary gland and blocks
metastatic bone disease. Thus, we propose to further understand the mechanisms of Runx2 activities that
are responsive to the mammary tumor microenvironment and are aberrantly associated with subnuclear foci
in tumor cells. Our aims are to 1- Establish that Runx2 promotes metastasis of breast cancer cells from
primary mammary tumors and that disruption of Runx2 in nuclear microenvironments will deaease
metastatic events in a genetic mouse model; 2- Characterize the specific Runx2 subnudear-dependent
functions that are required for tumor growth in the mammary fat pad and the bone microenvironment; and 3-
Identify specific regulatory proteins in subnuclear domains of breast cancer cells that support to tumor
growth and metastasis. These studies, in collaboration with Projects 1 and 2, will define Runx2 as a principal
mediator of tumor growth and metastasis by identifying novel Runx2-dependent signaling pathways which
function in nuclear microenvironments and contribute to progression of breast cancer.
RELEVANCE (See instmctions):
Runx2 is activated and increases with severity of disease in prostate and breast cancers patients.
Inactivation of this master transcription factor that regulates many metastasis related genes, can prevent
tumor growth in bone, a stage ofthe disease having a poor outcome for patients. By investigating the
functional activities of Runx2 in subnuclear foci in mammary tumors, we will gain insight into novel
mechanisms nnfirativfi diirinn tumor nrnnrflssinn and In nromotinn metastasis to distal sites
PROJECT/PERFORIVIANCE SITE(S) (if additional space is needed, use Project/Perfomiance Site Fomiat Page)
Project/Perfonnance Site Primary Location
Organizational Name: University of Massachusetts Medical School
DUNS: 603847393
streeti: 55 Lake Avenue North street 2:
City: Worcester County: State: MA
Province: Country: USA Zip/Postal Code: 01566
Project/Perfonnance Site Congressional Districts: MA-003
Additional Project/Performance
主转录调节因子Runx 2是骨生成所必需的,具有多功能的分子生物学功能。
和生物学。Runx 2是一种支架蛋白,与不同的共调节因子相互作用,
并且通过独特的Runx 2核基质靶向信号靶向亚核结构域。Runx 2是一款高性能
在转移到骨的肿瘤细胞中表达,在非转移性恶性细胞中以痕量水平存在
并且在正常乳腺上皮细胞中几乎不存在。我们已经证明了独特的靶向功能
Runx 2的表达是其促进骨中肿瘤生长和溶骨性骨病的活性所必需的。
我们已经证明Runx 2是许多基因的转录激活因子,这些基因参与了早期和晚期的细胞凋亡事件。
转移和介导有助于肿瘤生长的信号传导途径。因此,我们假设
Runx 2在高转移性乳腺癌中调节一组异常激活或抑制的基因,
乳腺肿瘤细胞的亚核区域中的癌细胞,其将促进向远端的转移
网站.重要的是,我们已经确定肿瘤细胞中Runx 2基底膜的缺失(通过Runx 2 shRNA和一种新的表达载体),
亚核靶向缺陷(STD)突变)减少乳腺中的肿瘤生长并阻断
转移性骨病因此,我们建议进一步了解Runx 2活动的机制,
对乳腺肿瘤微环境有反应,并与亚核病灶异常相关
在肿瘤细胞中。我们的目标是1-确定Runx 2促进乳腺癌细胞从乳腺癌细胞转移。
原发性乳腺肿瘤和核微环境中Runx 2的破坏将减少
2-表征特异性Runx 2皮下依赖性转移事件;
乳腺脂肪垫和骨微环境中肿瘤生长所需的功能;以及
乳腺癌细胞亚核结构域中支持肿瘤生长的特异性调节蛋白的鉴定
生长和转移。这些研究与项目1和项目2合作,将Runx 2定义为主体
通过鉴定新的Runx 2依赖性信号通路,
在核微环境中发挥作用,并促进乳腺癌的进展。
相关性(见说明):
Runx 2在前列腺癌和乳腺癌患者中被激活并随着疾病的严重程度而增加。
失活这个调控许多转移相关基因的主转录因子,可以防止
肿瘤生长在骨中,这是一个对患者预后不良的疾病阶段。通过调查
Runx 2在乳腺肿瘤亚核病灶中的功能活性,我们将深入了解新的
肿瘤远端转移的免疫抑制机制
项目/生产现场(如果需要额外空间,请使用项目/生产现场表格页)
项目/执行地点主要位置
组织名称:马萨诸塞州大学医学院
电话:603847393
streeti:55 Lake Avenue North street 2:
城市:Worcester County:州:MA
邮政编码:01566
项目/演出地点国会区:MA-003
其他项目/业绩
项目成果
期刊论文数量(0)
专著数量(0)
科研奖励数量(0)
会议论文数量(0)
专利数量(0)
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Jane B. Lian其他文献
Networks and hubs for the transcriptional control of osteoblastogenesis
- DOI:
10.1007/s11154-006-9001-5 - 发表时间:
2006-06-01 - 期刊:
- 影响因子:8.000
- 作者:
Jane B. Lian;Gary S. Stein;Amjad Javed;Andre J. van Wijnen;Janet L. Stein;Martin Montecino;Mohammad Q. Hassan;Tripti Gaur;Christopher J. Lengner;Daniel W. Young - 通讯作者:
Daniel W. Young
Gamma-carboxyglutamate excretion and calcinosis in juvenile dermatomyositis.
幼年皮肌炎中的γ-羧基谷氨酸排泄和钙质沉着。
- DOI:
10.1002/art.1780250910 - 发表时间:
1982 - 期刊:
- 影响因子:0
- 作者:
Jane B. Lian;Jane B. Lian;Lauren M. Pachman;C. Gundberg;Raymond E. H. Partridge;M. Maryjowski - 通讯作者:
M. Maryjowski
LB-036 - Cbfβ prevents articular cartilage degeneration
- DOI:
10.1016/j.joca.2024.03.038 - 发表时间:
2024-06-01 - 期刊:
- 影响因子:
- 作者:
Xiangguo Che;Xian Jin;Dong-Kyo Lee;Hee-June Kim;Hee-Soo Kyung;Hyun-Ju Kim;Jane B. Lian;Janet L. Stein;Gary S. Stein;Je-Yong Choi - 通讯作者:
Je-Yong Choi
Mitotic bookmarking of genes: a novel dimension to epigenetic control
基因的有丝分裂书签:表观遗传控制的一个新维度
- DOI:
10.1038/nrg2827 - 发表时间:
2010-07-13 - 期刊:
- 影响因子:52.000
- 作者:
Sayyed K. Zaidi;Daniel W. Young;Martin A. Montecino;Jane B. Lian;Andre J. van Wijnen;Janet L. Stein;Gary S. Stein - 通讯作者:
Gary S. Stein
Nuclear microenvironments in biological control and cancer
生物防治和癌症中的核微环境
- DOI:
10.1038/nrc2149 - 发表时间:
2007-06-01 - 期刊:
- 影响因子:66.800
- 作者:
Sayyed K. Zaidi;Daniel W. Young;Amjad Javed;Jitesh Pratap;Martin Montecino;Andre van Wijnen;Jane B. Lian;Janet L. Stein;Gary S. Stein - 通讯作者:
Gary S. Stein
Jane B. Lian的其他文献
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{{ truncateString('Jane B. Lian', 18)}}的其他基金
Project 3: MANCR Mediates Epigenetic Mechanisms for Survival of Advanced Breast Cancer
项目 3:MANCR 介导晚期乳腺癌生存的表观遗传机制
- 批准号:
10380073 - 财政年份:2021
- 资助金额:
$ 24.04万 - 项目类别:
Project 3: MANCR Mediates Epigenetic Mechanisms for Survival of Advanced Breast Cancer
项目 3:MANCR 介导晚期乳腺癌生存的表观遗传机制
- 批准号:
10608059 - 财政年份:2021
- 资助金额:
$ 24.04万 - 项目类别:
Runx2 Organizes Transcriptional Complexes in Nuclear Microenvironments to Support
Runx2 在核微环境中组织转录复合物以支持
- 批准号:
8052327 - 财政年份:2011
- 资助金额:
$ 24.04万 - 项目类别:
RUNX@ Subnuclear Targeting Integrates Signaling Pathways for Bone Formation
RUNX@ 亚核靶向整合骨形成信号通路
- 批准号:
8289359 - 财政年份:2011
- 资助金额:
$ 24.04万 - 项目类别:
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