Basilico Silvia, Göttgens Berthold
Department of Haematology, Cambridge Institute for Medical Research and Wellcome Trust and MRC Cambridge Stem Cell Institute, University of Cambridge, Hills Road, Cambridge, CB2 0XY, UK.
J Mol Med (Berl). 2017 Jul;95(7):719-727. doi: 10.1007/s00109-017-1535-3. Epub 2017 Apr 20.
Haematopoietic stem cells (HSC) are situated at the apex of the haematopoietic differentiation hierarchy, ensuring the life-long supply of mature haematopoietic cells and forming a reservoir to replenish the haematopoietic system in case of emergency such as acute blood loss. To maintain a balanced production of all mature lineages and at the same time secure a stem cell reservoir, intricate regulatory programs have evolved to control multi-lineage differentiation and self-renewal in haematopoietic stem and progenitor cells (HSPCs). Leukaemogenic mutations commonly disrupt these regulatory programs causing a block in differentiation with simultaneous enhancement of proliferation. Here, we briefly summarize key aspects of HSPC regulatory programs, and then focus on their disruption by leukaemogenic fusion genes containing the mixed lineage leukaemia (MLL) gene. Using MLL as an example, we explore important questions of wider significance that are still under debate, including the importance of cell of origin, to what extent leukaemia oncogenes impose specific regulatory programs and the relevance of leukaemia stem cells for disease development and prognosis. Finally, we suggest that disruption of stem cell regulatory programs is likely to play an important role in many other pathologies including ageing-associated regenerative failure.
造血干细胞(HSC)位于造血分化层级的顶端,确保成熟造血细胞的终身供应,并形成一个储备库,以便在急性失血等紧急情况下补充造血系统。为了维持所有成熟谱系的平衡产生,同时确保干细胞储备,复杂的调控程序已经进化出来,以控制造血干细胞和祖细胞(HSPC)的多谱系分化和自我更新。致白血病突变通常会破坏这些调控程序,导致分化受阻,同时增殖增强。在这里,我们简要总结HSPC调控程序的关键方面,然后重点关注含有混合谱系白血病(MLL)基因的致白血病融合基因对其的破坏。以MLL为例,我们探讨了仍在争论的具有更广泛意义的重要问题,包括起源细胞的重要性、白血病致癌基因在多大程度上施加特定的调控程序以及白血病干细胞对疾病发展和预后的相关性。最后,我们认为干细胞调控程序的破坏可能在包括与衰老相关的再生衰竭在内的许多其他病理过程中发挥重要作用。