Identification of novel y-globin corepressors and advanced inhibitor development
新型 y 球蛋白辅阻遏物的鉴定和高级抑制剂的开发
基本信息
- 批准号:10164854
- 负责人:
- 金额:$ 47.24万
- 依托单位:
- 依托单位国家:美国
- 项目类别:
- 财政年份:2019
- 资助国家:美国
- 起止时间:2019-08-01 至 2024-04-30
- 项目状态:已结题
- 来源:
- 关键词:AddressAdultAffectAnimal ModelAnimalsBasic ScienceBehavioralBenignBiochemical GeneticsBiochemistryBiologicalBiological AssayBirthCHD4 geneCardiacCellsCessation of lifeChromatinChronicClinicalClinical ResearchClinical TrialsCollaborationsComplexCooley&aposs anemiaCoupledDNA BindingDNA-Binding ProteinsDataDevelopmentDiseaseDrug DesignDrug TargetingEnzyme InhibitionEnzyme Inhibitor DrugsEnzymesEpigenetic ProcessErythrocytesErythroid Progenitor CellsExcisionExhibitsFDA approvedFailureFetal HemoglobinFunctional disorderGenerationsGenesGenetic TranscriptionGlobinGoalsHemoglobinopathiesHumanIn VitroIndividualInfantInterventionKDM1A geneLifeMichiganModelingModificationMolecularMolecular TargetMorbidity - disease rateMusOralPapioPathway interactionsPatientsPharmaceutical ChemistryPharmaceutical PreparationsPharmacologyPhysiologicalPrimatesProteinsProteomicsRegulationRepressionRepressor ProteinsResearchResearch PersonnelSMARCA5 geneSafetySickle Cell AnemiaSickle Cell TraitSickle HemoglobinStrokeStructureTestingTherapeuticTherapeutic InterventionTissue ModelTranslationsUniversitiesValidationacute chest syndromebasebeta Globincombinatorialdesigneffective therapyexperiencefetalfollow-upgamma Globingene repressiongenetic corepressorhydroxyureaimprovedin vivoinhibitor/antagonistmortalitymultiorgan damagemutantnovelpatient subsetspolymerizationpostnatalpre-clinicalpreclinical studypredictive modelingprotein complexresearch studyresponseside effectstructural biologysynergismtargeted treatmenttissue culture
项目摘要
Abstract:
The ultimate goal of this research is to provide safe, effective, accessible and durable disease modification for
sickle cell anemia (SCD) and β-thalassaemia (CA) that will improve multi-organ pathophysiology and reduce
early death. Incontrovertible data from both basic and clinical research studies over the past 40 years support
the premise that inducing fetal γ-globin (HBG) gene repression would be therapeutic in human patients. The
two specific aims of this proposal focus on the manipulation and specific targeting of the transcriptional
regulatory machinery that represses HBG genes during development. Our first aim is devoted to the discovery
and validation of new epigenetic modifying enzymes that elicit γ-globin repressive activity in adult erythroid
progenitor cells, and we describe several promising new candidate enzymes that we propose to investigate for
potential drug targeting. Our second aim is to refine structure-based inhibitors of the epigenetic modifying
enzyme LSD1 (KDM1a), which (we showed in a proof of concept study) could constitute an ideal target for
therapeutic intervention for the treatment of these diseases. Through structure-aided design coupled to
iterative enzyme inhibition and cell-based HbF induction assays, we are currently refining and testing fourth
and fifth generation inhibitors (designed at the University of Michigan). These compounds have evolved to the
point that they are proposed to be highly specific for LSD1 (with IC50s < 90 nM), are reversible, exhibit no
behavioral or cardiac side effects and can be orally administered. We have already developed LSD1 inhibitors
that were partially successful in preclinical animal studies, and here we propose to develop novel compounds
with minimal undesirable on target effects. We propose to follow up these preclinical studies, in collaboration
with investigators in project 2, by analysis of the effects of the best of these novel inhibitors in baboons, and if
those are successful, in collaboration with project 3, in human clinical trials. The projected impact for patients
suffering from β-globinopathies is that these proposed HbF-inducing therapies will be sufficiently efficacious to
counter the devastating complications of these diseases such as stroke and acute chest syndrome, and with
accessibility and safety parameters that will permit universal application as well as life-long use.
摘要:
这项研究的最终目标是为人类提供安全、有效、可获得和持久的疾病修饰,
镰状细胞性贫血(SCD)和β-地中海贫血(CA),这将改善多器官病理生理学,
早死过去40年来基础和临床研究的无可争议的数据支持
前提是诱导胎儿γ-珠蛋白(HBG)基因抑制将在人类患者中具有治疗性。的
该建议的两个具体目标集中在转录的操纵和特异性靶向,
在发育过程中抑制HBG基因的调节机制。我们的首要目标是发现
并验证了在成人红系中引起γ-珠蛋白抑制活性的新的表观遗传修饰酶
祖细胞,我们描述了几个有前途的新的候选酶,我们建议调查
潜在的药物靶向。我们的第二个目标是改进基于结构的表观遗传修饰抑制剂,
酶LSD 1(KDM 1a),这(我们在概念研究的证明)可以构成一个理想的目标,
治疗这些疾病的治疗干预。通过结构辅助设计,
迭代酶抑制和基于细胞的HbF诱导测定,我们目前正在完善和测试第四
和第五代抑制剂(由密歇根大学设计)。这些化合物已经进化到
这一点表明,它们对LSD 1具有高度特异性(IC 50 < 90 nM),是可逆的,没有表现出任何毒性。
行为或心脏副作用,并且可以口服给药。我们已经开发出LSD 1抑制剂
在临床前动物研究中取得了部分成功,在这里,我们建议开发新的化合物,
对目标的不良影响最小。我们建议合作跟进这些临床前研究
通过分析这些新型抑制剂中最好的一种在狒狒中的作用,
与项目3合作,在人体临床试验中取得了成功。预计对患者的影响
患有β-球蛋白病的患者的最大的问题是,这些提出的HbF诱导疗法将足够有效,
对抗这些疾病的毁灭性并发症,如中风和急性胸部综合征,
可访问性和安全参数,将允许普遍应用以及终身使用。
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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James Douglas Engel其他文献
Chromosomal rearrangements between 3q21 and 3q26 induce leukemogenesis by misdirecting both EVI1 and GATA2 genes.
3q21 和 3q26 之间的染色体重排通过误导 EVI1 和 GATA2 基因诱导白血病发生。
- DOI:
- 发表时间:
2016 - 期刊:
- 影响因子:0
- 作者:
Mikiko Suzuki;Saori Katayama;Hiromi Yamazaki;James Douglas Engel;Masayuki Yamamoto. - 通讯作者:
Masayuki Yamamoto.
Keap1-Nrf2 System: Potential Role in Prevension of Sickle Cell Disease and Inflammation.
Keap1-Nrf2 系统:在预防镰状细胞病和炎症中的潜在作用。
- DOI:
- 发表时间:
2015 - 期刊:
- 影响因子:0
- 作者:
Nadine Keleku-Lukwete;Mikiko Suzuki;Akihito Otsuki;Kouhei Tsuchida;Saori Katayama;Makiko Hayashi;Eriko Naganuma;Takashi Moriguchi;Osamu Tanabe;James Douglas Engel;and Masayuki Yamamoto. - 通讯作者:
and Masayuki Yamamoto.
Simple math for the β-globin locus control region
- DOI:
10.1182/blood.v98.7.2000 - 发表时间:
2001-10-01 - 期刊:
- 影响因子:
- 作者:
James Douglas Engel - 通讯作者:
James Douglas Engel
Identification of Novel Regulators of Erythropoiesis Using Whole-Genome CRISPR-Cas9 Screening
- DOI:
10.1182/blood-2022-170101 - 发表时间:
2022-11-15 - 期刊:
- 影响因子:
- 作者:
Greggory Myers;Lei Yu;Ginette Balbin-Cuesta;Ayse Bilge Ozel;James Douglas Engel;Rami Khoriaty - 通讯作者:
Rami Khoriaty
Molecular basis of CNC and small Maf dimer function in neural tissues.
CNC 和小 Maf 二聚体在神经组织中功能的分子基础。
- DOI:
- 发表时间:
2010 - 期刊:
- 影响因子:0
- 作者:
Fumiki Katsuoka;Hiromi Yamazaki;Hozumi Motohashi;James Douglas Engel;Masayuki Yamamoto;Fumiki Katsuoka. - 通讯作者:
Fumiki Katsuoka.
James Douglas Engel的其他文献
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{{ truncateString('James Douglas Engel', 18)}}的其他基金
University of Michigan Kidney, Urology and Hematology Research Training Network
密歇根大学肾脏、泌尿科和血液学研究培训网络
- 批准号:
10506490 - 财政年份:2022
- 资助金额:
$ 47.24万 - 项目类别:
Identification of novel y-globin corepressors and advanced inhibitor development
新型 y 球蛋白辅阻遏物的鉴定和高级抑制剂的开发
- 批准号:
10627770 - 财政年份:2019
- 资助金额:
$ 47.24万 - 项目类别:
Targeting Enzymatic Regulation of Fetal Hemoglobin Repression
胎儿血红蛋白抑制的靶向酶调节
- 批准号:
10627766 - 财政年份:2019
- 资助金额:
$ 47.24万 - 项目类别:
Targeting Enzymatic Regulation of Fetal Hemoglobin Repression
胎儿血红蛋白抑制的靶向酶调节
- 批准号:
10400171 - 财政年份:2019
- 资助金额:
$ 47.24万 - 项目类别:
Targeting Enzymatic Regulation of Fetal Hemoglobin Repression
胎儿血红蛋白抑制的靶向酶调节
- 批准号:
10164849 - 财政年份:2019
- 资助金额:
$ 47.24万 - 项目类别:
Identification of novel y-globin corepressors and advanced inhibitor development
新型 y 球蛋白辅阻遏物的鉴定和高级抑制剂的开发
- 批准号:
10400174 - 财政年份:2019
- 资助金额:
$ 47.24万 - 项目类别:
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