One gene, two phenotypes – understanding the pathomechanics and leukemia development in congenital neutropenia and cyclic neutropenia
One gene, two phenotypes – understanding the pathomechanics and leukemia development in congenital neutropenia and cyclic neutropenia
批准号:
455056283
负责人:
Professorin Dr. Julia Skokowa, Ph.D.
金额:
$0.0万
依托单位:
依托单位国家:
德国
项目类别:
Research Grants
财政年份:
--
资助国家:
德国
项目状态:
未结题
起止时间:
中文摘要
严重先天性中性粒细胞减少症(CN)是一种单系白血病前骨髓衰竭综合征,以早发中性粒细胞减少伴严重感染为特征。CN是一种异质性疾病,由不同基因的突变引起,但最常见的是在Elane,编码中性粒细胞弹性蛋白酶(NE)蛋白,这是一种常染色体显性遗传疾病。遗传性中性粒细胞减少的第二种形式是循环性中性粒细胞减少症(Cyn),其特征是中性粒细胞计数的振荡,每21天出现一次最低点。在中性粒细胞数量低的时期,患者可能会患上感染,如口腔炎、牙周炎和伤寒。几乎所有的CyN病例都是由Elane突变引起的,值得注意的是,导致CyN的突变总是与CN中描述的突变重叠。目前还不清楚相同的突变是如何导致CN和CyN的。CN的一个严重并发症是骨髓增生异常综合征(MDS)和急性髓系白血病(AML)的发展,而CyN的程度要轻得多。粒细胞集落刺激因子(G-CSF)是治疗CN、CIN患者的救命药物,具有促进粒细胞生成、预防严重感染的作用。然而,在CN中发生白血病的风险与所需的G-CSF剂量直接相关。经过10年的G-CSF治疗,CN中MDS或AML的累积发病率约为20%。CyN患者发生MDS和AML的易感性要低得多,但仍存在。目前尚不清楚为什么Cyn患者的白血病进展速度要慢得多。目前还没有小鼠模型来研究Elane突变引起的CN和Cyn,因为在小鼠中靶向Elane的小鼠直系同源物不会导致中性粒细胞减少。此外,由于CN和CyN通常是由Elane的相同突变引起的,因此不可能通过简单的基因编辑方法生成区分这两种疾病的准确模型。因此,我们的目标是利用患者来源的诱导多能干细胞(IPSCs)建立一个由Elane突变引起的CN和CyN以及CN的恶性转化的模型。重要的是,ipscs携带患者的全部遗传背景,因此将包括任何到目前为止尚未确定的可能的遗传修饰物。我们最近发表了患者来源的IPSCs的产生和粒细胞分化,包括由Elane突变引起的CN。IPSCs重现了临床观察到的粒系造血细胞缺陷。目前还没有公开发表的研究使用细胞色素PSCs模型。我们计划使用患者来源的IPSCs来比较CN和CYN的病理机制。此外,由于CN患者具有与获得性G-CSFR突变相关的白血病转化的高风险,我们的目标是通过使用CRISPR/Cas9引入这些突变来生成白血病前期模型。我们相信,该模型将有助于阐明CN早期恶变过程中所涉及的途径,并可能揭示更多有助于恶变的一般途径。
英文摘要
Severe congenital neutropenia (CN) is a mono-lineage pre-leukemia bone marrow failure syndrome, characterized by early onset of neutropenia accompanied by severe infections. CN is a heterogeneous disease, caused by mutations in different genes, but most commonly in ELANE, encoding the neutrophil elastase (NE) protein, which is inherited as an autosomal dominant disease. A second form of hereditary neutropenia is cyclic neutropenia (CyN), which is characterized by oscillations of the neutrophil counts with a nadir occurring every 21 days. During the periods of low neutrophil counts, patients may suffer from infections, such as aphthous stomatitis, periodontitis and typhlitis. Almost all cases of CyN result from mutations in ELANE and, remarkably, the mutations causing CyN invariably overlap with those described in CN. It is unclear how the same mutation can cause CN and CyN. One severe complication of CN, and to a much lesser extent of CyN, is the development of myelodysplastic syndrome (MDS) and acute myeloid leukemia (AML). Granulocyte-colony stimulating factor (G-CSF) is a life-saving drug for CN and CyN patients, improving the granulopoiesis and preventing severe infections. However, the risk of leukemia development in CN directly correlates with the G-CSF dose required. The cumulative incidence of MDS or AML in CN is around 20% after 10 years of G-CSF treatment. Patients with CyN have a much lower but existent susceptibility to develop MDS and AML. It is unclear why leukemia progression is much lower in CyN patients. No mouse model exists to study CN and CyN caused by ELANE mutations, as targeting the mouse ortholog of ELANE in mice does not cause neutropenia. In addition, as CN and CyN are often caused by identical mutations in ELANE, it is not possible to generate accurate models that will differentiate between the two disorders by simple gene editing methods. Therefore, we aim to generate a model for CN and CyN caused by ELANE mutations and for the malignant transformation in CN, using patients-derived induced pluripotent stem cells (iPSCs). Importantly, iPSCs carry the full genetic background of the patients, and will therefore include any possible genetic modifiers that have not been identified so far. We recently published the generation and granulocytic differentiation of patients-derived iPSCs, including for CN caused by mutations in ELANE. iPSCs recapitulated the defective granulopoiesis observed clinically. No published study utilized an iPSCs model of CyN. We plan to compare pathomechanics of CN and CyN using patients-derived iPSCs. In addition, as CN patients carry a high risk for leukemic transformation, related to acquired G-CSFR mutations, we aim to generate a model for pre-leukemia by introducing these mutations using CRISPR/Cas9. We believe that this model will help elucidate the pathways involved in early malignant transformation processes in CN and may reveal more general pathways contributing to malignant transformation.
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The role of NAMPT/SIRTs signaling in hematopoietic differentiation
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批准号:391926187
-
项目类别:Research Grants
-
资助金额:$0.0万
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财政年份:2017
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负责人:Professorin Dr. Julia Skokowa, Ph.D.
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依托单位:
Humanized NSG mouse model to study combinatorial leukemogenic effects of inherited ELANE and acquired CSF3R/RUNX1 mutations in congenital neutropenia
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批准号:290677262
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项目类别:Research Grants
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资助金额:$0.0万
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财政年份:2016
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负责人:Professorin Dr. Julia Skokowa, Ph.D.
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依托单位:
G-CSF-dependent de-/acetylation of myeloid-specific transcription factors LEF 1 and C/EBPalpha in myeloid differentiation and leukemogenesis
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批准号:247949958
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项目类别:Research Grants
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资助金额:$0.0万
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财政年份:2014
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负责人:Professorin Dr. Julia Skokowa, Ph.D.
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依托单位:
Die Analyse der Interaktion zwischen dem Transkriptionsfaktor LEF-1 und der Neutrophilen Elastase in der Granulopoese: die funktionelle Rolle von ELA2 Mutationen bei Patienten mit schwerer angeborener Netropenie.
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批准号:62481862
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项目类别:Research Grants
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资助金额:$0.0万
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财政年份:2008
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负责人:Professorin Dr. Julia Skokowa, Ph.D.
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依托单位:
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