Division of Hematology-Oncology, Department of Medicine, Case Western Reserve University, Cleveland, Ohio, United States of America.
PLoS One. 2010 Feb 10;5(2):e9152. doi: 10.1371/journal.pone.0009152.
Grb2-associated binding (Gab) adapter proteins play major roles in coordinating signaling downstream of hematopoietic cytokine receptors. In hematopoietic cells, Gab2 can modulate phosphatidylinositol-3 kinase and mitogen associated protein kinase activities and regulate the long-term multilineage competitive repopulating activity of hematopoietic stem cells (HSCs). Gab2 may also act in a linear pathway upstream or downstream of signal transducer and activator of transcription-5 (STAT5), a major positive regulator of HSC function. Therefore, we aimed to determine whether Gab2 and STAT5 function in hematopoiesis in a redundant or non-redundant manner.
METHODOLOGY/PRINCIPAL FINDINGS: To do this we generated Gab2 mutant mice with heterozygous and homozygous deletions of STAT5. In heterozygous STAT5 mutant mice, deficiencies in HSC/multipotent progenitors were reflected by decreased long-term repopulating activity. This reduction in repopulation function was mirrored in the reduced growth response to early-acting cytokines from sorted double mutant c-Kit(+)Lin(-)Sca-1(+) (KLS) cells. Importantly, in non-ablated newborn mice, the host steady-state engraftment ability was impaired by loss of Gab2 in heterozygous STAT5 mutant background. Fetal liver cells isolated from homozygous STAT5 mutant mice lacking Gab2 showed significant reduction in HSC number (KLS CD150(+)CD48(-)), reduced HSC survival, and dramatic loss of self-renewal potential as measured by serial transplantation.
CONCLUSIONS/SIGNIFICANCE: These data demonstrate new functions for Gab2 in hematopoiesis in a manner that is non-redundant with STAT5. Furthermore, important synergy between STAT5 and Gab2 was observed in HSC self-renewal, which might be exploited to optimize stem cell-based therapeutics.
Grb2 相关结合(Gab)衔接蛋白在协调造血细胞因子受体下游的信号转导中发挥重要作用。在造血细胞中,Gab2 可以调节磷酸肌醇-3 激酶和丝裂原相关蛋白激酶的活性,并调节造血干细胞(HSCs)的长期多谱系竞争重编程活性。Gab2 也可能在信号转导和转录激活因子-5(STAT5)的上游或下游的线性途径中发挥作用,STAT5 是 HSC 功能的主要正向调节因子。因此,我们旨在确定 Gab2 和 STAT5 在造血过程中是否以冗余或非冗余的方式发挥作用。
方法/主要发现:为此,我们生成了 STAT5 杂合和纯合缺失的 Gab2 突变小鼠。在杂合 STAT5 突变小鼠中,HSC/多能祖细胞的缺陷表现为长期重编程活性降低。这种重编程功能的降低反映在分选的双突变体 c-Kit(+)Lin(-)Sca-1(+)(KLS)细胞早期作用的细胞因子的生长反应减少。重要的是,在非消融的新生小鼠中,在杂合 STAT5 突变背景下 Gab2 的缺失损害了宿主的稳态植入能力。从缺乏 Gab2 的纯合 STAT5 突变小鼠分离的胎肝细胞显示 HSC 数量显著减少(KLS CD150(+)CD48(-)),HSC 存活减少,以及自我更新潜力的显著丧失,如通过连续移植测量。
结论/意义:这些数据表明 Gab2 在造血中的新功能,其方式与 STAT5 非冗余。此外,在 HSC 自我更新中观察到 STAT5 和 Gab2 之间的重要协同作用,这可能被利用来优化基于干细胞的治疗方法。