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一种组成性激活的嵌合细胞因子受体赋予造血细胞系不依赖因子的生长能力。

A constitutively activated chimeric cytokine receptor confers factor-independent growth in hematopoietic cell lines.

作者信息

Shikama Y, Barber D L, D'Andrea A D, Sieff C A

机构信息

Division of Pediatric Hematology, Harvard Medical School, Boston, MA, USA.

出版信息

Blood. 1996 Jul 15;88(2):455-64.

PMID:8695792
Abstract

The high-affinity receptor for granulocyte-macrophage colony-stimulating factor (GMR) comprises at least 2 distinct subunits, alpha and beta common (beta c), whereas the normal erythropoietin receptor (nEpoR) comprises only one known subunit. An arginine to cysteine (R129C) mutation of the extracytoplasmic domain of the murine EpoR leads to Epo-independent growth in transduced cells (cEpoR). To investigate the proliferative functions of the cytoplasmic regions of each GMR subunit separately and the potential of the R129C EpoR mutation to induce factor-independent growth through heterologous receptor regions, we constructed four hybrid receptors: the extracellular region of either murine nEpoR or cEpoR linked to the transmembrane and cytoplasmic regions of either the human GMR alpha or beta c subunit (nE alpha, nE beta, cE alpha, and cE beta). We then expressed them in an interleukin-3-dependent murine cell line, Ba/F3. Expression of nE beta led to Epo-dependent growth, whereas expression of cE beta conferred factor-independent growth. Surprisingly, expression of cE alpha also resulted in factor-independent cell growth, whereas nE alpha did not respond to Epo. Furthermore, the functional hybrid receptors showed Epo-dependent (nE beta) or constitutive (cE alpha and cE beta) tyrosine phosphorylation of the cytoplasmic kinases JAK1 and JAK2. We reasoned that the proliferative signal of cE alpha was transduced either through the alpha tail itself or through an accessory protein such as the endogenous murine beta common subunit (mu beta c). To distinguish these possibilities, the chimeric receptor cE alpha was expressed in the interleukin-2-dependent murine cell line, CTLL-2, that does not express mu beta c. cE alpha did not induce cell growth in CTLL-2; however, when mu beta c was coexpressed with cE alpha in CTLL-2, factor-independent growth was reconstituted. In conclusion, the cytoplasmic domain of the GMR alpha subunit requires a beta chain for transduction of a proliferative signal. Furthermore, the R129C EpoR mutation can constitutively activate heterologous receptors to mediate factor-independent proliferation.

摘要

粒细胞 - 巨噬细胞集落刺激因子(GMR)的高亲和力受体至少由2个不同的亚基组成,即α亚基和β共同亚基(βc),而正常的促红细胞生成素受体(nEpoR)仅由一个已知亚基组成。小鼠EpoR胞外结构域的精氨酸到半胱氨酸(R129C)突变导致转导细胞(cEpoR)中出现不依赖促红细胞生成素的生长。为了分别研究每个GMR亚基细胞质区域的增殖功能,以及R129C EpoR突变通过异源受体区域诱导因子非依赖性生长的潜力,我们构建了四种杂合受体:将小鼠nEpoR或cEpoR的胞外区域与人类GMR α亚基或βc亚基的跨膜和细胞质区域相连(nEα、nEβ、cEα和cEβ)。然后我们在依赖白细胞介素 - 3的小鼠细胞系Ba/F3中表达它们。nEβ的表达导致依赖促红细胞生成素的生长,而cEβ的表达赋予了因子非依赖性生长。令人惊讶的是,cEα的表达也导致了因子非依赖性细胞生长,而nEα对促红细胞生成素无反应。此外,功能性杂合受体显示出细胞质激酶JAK1和JAK2的促红细胞生成素依赖性(nEβ)或组成性(cEα和cEβ)酪氨酸磷酸化。我们推测cEα的增殖信号要么通过α亚基尾部本身转导,要么通过诸如内源性小鼠β共同亚基(muβc)的辅助蛋白转导。为了区分这些可能性,嵌合受体cEα在不表达muβc的依赖白细胞介素 - 2的小鼠细胞系CTLL - 2中表达。cEα在CTLL - 2中未诱导细胞生长;然而,当muβc与cEα在CTLL - 2中共表达时,因子非依赖性生长得以重建。总之,GMR α亚基的细胞质结构域需要β链来转导增殖信号。此外,R129C EpoR突变可以组成性激活异源受体以介导因子非依赖性增殖。

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