Niemeyer Charlotte M
Department of Pediatric Hematology and Oncology, Universitätsklinikum Freiburg, Germany
Haematologica. 2014 Nov;99(11):1653-62. doi: 10.3324/haematol.2014.114595.
RAS genes encode a family of 21 kDa proteins that are an essential hub for a number of survival, proliferation, differentiation and senescence pathways. Signaling of the RAS-GTPases through the RAF-MEK-ERK pathway, the first identified mitogen-associated protein kinase (MAPK) cascade is essential in development. A group of genetic syndromes, named "RASopathies", had been identified which are caused by heterozygosity for germline mutations in genes that encode protein components of the RAS/MAPK pathway. Several of these clinically overlapping disorders, including Noonan syndrome, Noonan-like CBL syndrome, Costello syndrome, cardio-facio-cutaneous (CFC) syndrome, neurofibromatosis type I, and Legius syndrome, predispose to cancer and abnormal myelopoiesis in infancy. This review focuses on juvenile myelomonocytic leukemia (JMML), a malignancy of early childhood characterized by initiating germline and/or somatic mutations in five genes of the RAS/MAPK pathway: PTPN11, CBL, NF-1, KRAS and NRAS. Natural courses of these five subtypes differ, although hematopoietic stem cell transplantation remains the only curative therapy option for most children with JMML. With whole-exome sequencing studies revealing few secondary lesions it will be crucial to better understand the RAS/MAPK signaling network with its crosstalks and feed-back loops to carefully design early clinical trials with novel pharmacological agents in this still puzzling leukemia.
RAS基因编码一族21 kDa的蛋白质,这些蛋白质是许多生存、增殖、分化和衰老途径的关键枢纽。RAS-GTP酶通过RAF-MEK-ERK途径发出信号,这是首个被鉴定出的丝裂原相关蛋白激酶(MAPK)级联反应,在发育过程中至关重要。已经鉴定出一组名为“RAS病”的遗传综合征,它们是由编码RAS/MAPK途径蛋白质成分的基因发生种系突变的杂合性引起的。这些临床症状重叠的疾病中有几种,包括努南综合征、努南样CBL综合征、科斯特洛综合征、心脏-颜面-皮肤(CFC)综合征、I型神经纤维瘤病和勒吉尤斯综合征,在婴儿期易患癌症和异常骨髓生成。本综述重点关注青少年骨髓单核细胞白血病(JMML),这是一种幼儿期恶性肿瘤,其特征是RAS/MAPK途径的五个基因发生种系和/或体细胞起始突变:PTPN11、CBL、NF-1、KRAS和NRAS。这五种亚型的自然病程各不相同,尽管造血干细胞移植仍然是大多数JMML患儿唯一的治愈性治疗选择。全外显子测序研究显示继发性病变很少,因此,更好地了解RAS/MAPK信号网络及其相互作用和反馈回路,对于在这种仍然令人困惑的白血病中精心设计使用新型药物的早期临床试验至关重要。