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异表型小鼠造血干细胞群体中的基因型限制生长和衰老模式。

Genotype-restricted growth and aging patterns in hematopoietic stem cell populations of allophenic mice.

作者信息

Van Zant G, Holland B P, Eldridge P W, Chen J J

机构信息

Department of Cell Biology and Anatomy, Texas Tech University Health Sciences Center, Lubbock 79430.

出版信息

J Exp Med. 1990 May 1;171(5):1547-65. doi: 10.1084/jem.171.5.1547.

Abstract

We have studied contributions to hematopoiesis of genetically distinct stem cell populations in allophenic mice. Chimeras were made by aggregating embryos of inbred strains known to differ with respect to stem cell population kinetics. One partner strain (DBA/2) has previously been shown to normally have a stem cell (CFU-S) population of which 24% are in S-phase of the cell cycle, whereas the homologous population of the other partner strain (C57BL/6) was characterized by having only 2.6% in cycle (7). Contributions of the chimeric stem cell population to mature blood cell pools were studied throughout the life of the mice and intrinsic differences in stem cell function and aging were reflected in dynamic patterns of blood cell composition. The DBA/2 stem cell population was eclipsed by stem cells of the C57BL/6 genotype and, after 1.5-3 yr, the hemato-lymphoid composition of 22 of 27 mice studied for this long had shifted by at least 25 percentage points toward the C57BL/6 genotype. 8 of the 27 had hematolymphoid populations solely of C57BL/6 origin. To test whether or not a population of stem cells with an inherently higher cycling rate (DBA/2) might have a competitive advantage during repopulation, we engrafted allophenic marrow into lethally irradiated (C57BL/6 x DBA/2)F1 recipients. DBA/2 hematopoiesis was predominant early, far outstripping its representation in the marrow graft. Perhaps as a consequence of inherently greater DBA/2 stem cell proliferation, the populations of developmentally more restricted precursor populations (CFU-E, BFU-E, CFU-GM, CFU-GEMM) showed an overwhelming DBA/2 bias in the first 2-3 mo after engraftment. However, as in the allophenic mice themselves during the aging process, the C57BL/6 genotypic representation was ascendant over the subsequent months. The shift toward C57BL/6 genotype was first documented in the marrow and spleen precursor cell populations and was subsequently reflected in the circulating, mature blood cells. Bone marrow-derived stromal cell cultures from engrafted mice were studied and genotypic analyses showed donor representation in stromal cell populations that reflected donor hematopoietic contributions in the same recipient. Results from these studies involving two in vivo settings (allophenic mice and engraftment by allophenic marrow) are consistent with the notion that a cell autonomous difference in stem cell proliferation confers on one population a competitive repopulating advantage, but at the expense of longevity.

摘要

我们研究了异基因小鼠中基因不同的干细胞群体对造血作用的贡献。通过聚集已知在干细胞群体动力学方面存在差异的近交系胚胎来制备嵌合体。其中一个亲本品系(DBA/2)先前已被证明正常情况下具有干细胞(CFU-S)群体,其中24%处于细胞周期的S期,而另一个亲本品系(C57BL/6)的同源群体的特点是处于细胞周期的比例仅为2.6%(7)。在小鼠的整个生命过程中研究了嵌合干细胞群体对成熟血细胞池的贡献,干细胞功能和衰老的内在差异反映在血细胞组成的动态模式中。DBA/2干细胞群体被C57BL/6基因型的干细胞所取代,在1.5 - 3年后,对其进行长期研究的27只小鼠中有22只的血液淋巴组成至少向C57BL/6基因型方向偏移了25个百分点。27只小鼠中有8只的血液淋巴细胞群完全源自C57BL/6。为了测试具有固有较高循环率的干细胞群体(DBA/2)在再填充过程中是否可能具有竞争优势,我们将异基因骨髓移植到经致死性照射的(C57BL/6×DBA/2)F1受体小鼠体内。早期DBA/2造血占主导,远远超过其在骨髓移植中的占比。也许由于DBA/2干细胞固有地具有更强的增殖能力,在发育上更受限制的前体细胞群体(CFU-E、BFU-E、CFU-GM、CFU-GEMM)在移植后的前2 - 3个月显示出压倒性的DBA/2偏向。然而,正如在衰老过程中的异基因小鼠自身一样,在随后的几个月中C57BL/6基因型的占比逐渐上升。向C57BL/6基因型的转变首先在骨髓和脾前体细胞群体中得到证实,随后反映在循环的成熟血细胞中。对移植小鼠的骨髓来源的基质细胞培养物进行了研究,基因型分析显示基质细胞群体中的供体占比反映了同一受体中供体的造血贡献。这些涉及两种体内情况(异基因小鼠和异基因骨髓移植)的研究结果与以下观点一致,即干细胞增殖中的细胞自主性差异赋予一个群体竞争再填充优势,但以寿命为代价。

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