Division of Hematology, Children's Hospital of Philadelphia, Philadelphia, PA; and.
Department of Pediatrics and.
Blood. 2019 Apr 4;133(14):1560-1571. doi: 10.1182/blood-2018-10-877563. Epub 2019 Feb 12.
Hematopoietic stem cell (HSC) homeostasis is controlled by cytokine receptor-mediated Janus kinase 2 (JAK2) signaling. We previously found that JAK2 is promptly ubiquitinated upon cytokine stimulation. Whether a competing JAK2 deubiquitination activity exists is unknown. LNK is an essential adaptor protein that constrains HSC expansion through dampening thrombopoietin (TPO)-induced JAK2 signaling. We show here that a LNK-associated lysine-63 (K63)-deubiquitinating enzyme complex, Brcc36 isopeptidase complex (BRISC), attenuates HSC expansion through control of JAK2 signaling. We pinpoint a direct interaction between the LNK SH2 domain and a phosphorylated tyrosine residue in KIAA0157 (Abraxas2), a unique and defining BRISC component. deficiency in mice led to an expansion of phenotypic and functional HSCs. Endogenous JAK2 and phospho-JAK2 were rapidly K63-ubiquitinated upon TPO stimulation, and this action was augmented in cells depleted of the BRISC core components KIAA0157, MERIT40, or BRCC36. This increase in JAK2 ubiquitination after BRISC knockdown was associated with increased TPO-mediated JAK2 activation and protein levels, and increased MPL receptor presence at the cell surface. In addition, BRISC depletion promoted membrane proximal association between the MPL receptor and pJAK2/JAK2, thus enhancing activated JAK2/MPL at the cell membrane. These findings define a novel pathway by which K63-ubiquitination promotes JAK2 stability and activation in a proteasome-independent manner. Moreover, mutations in BRCC36 are found in clonal hematopoiesis in humans. This research may shed light on the mechanistic understanding of a potential role of BRCC36 in human HSCs.
造血干细胞(HSC)的稳态由细胞因子受体介导的 Janus 激酶 2(JAK2)信号控制。我们之前发现,细胞因子刺激后 JAK2 会迅速被泛素化。是否存在竞争性 JAK2 去泛素化活性尚不清楚。LNK 是一种必不可少的衔接蛋白,通过抑制血小板生成素(TPO)诱导的 JAK2 信号来限制 HSC 的扩增。我们在这里表明,LNK 相关的赖氨酸-63(K63)去泛素化酶复合物 Brcc36 异肽酶复合物(BRISC)通过控制 JAK2 信号来减弱 HSC 的扩增。我们发现 LNK SH2 结构域与 KIAA0157(Abraxas2)中一个磷酸化酪氨酸残基之间存在直接相互作用,而 KIAA0157(Abraxas2)是一种独特且定义明确的 BRISC 成分。小鼠中的 缺失导致表型和功能 HSC 的扩增。内源性 JAK2 和磷酸化 JAK2 在 TPO 刺激后迅速被 K63 泛素化,而在 BRISC 核心成分 KIAA0157、MERIT40 或 BRCC36 耗尽的细胞中,这种作用增强。BRISC 敲低后 JAK2 泛素化增加与 TPO 介导的 JAK2 激活和蛋白水平增加以及 MPL 受体在细胞表面的存在增加有关。此外,BRISC 耗竭促进了 MPL 受体和 pJAK2/JAK2 之间的膜近端关联,从而增强了细胞膜上的激活 JAK2/MPL。这些发现定义了一种新的途径,通过该途径,K63 泛素化以不依赖蛋白酶体的方式促进 JAK2 的稳定性和激活。此外,BRCC36 中的突变在人类克隆性造血中被发现。这项研究可能阐明了 BRCC36 在人类 HSCs 中潜在作用的机制理解。