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Fps/Fes和Fer蛋白酪氨酸激酶在调节造血过程中发挥冗余作用。

Fps/Fes and Fer protein-tyrosinekinases play redundant roles in regulating hematopoiesis.

作者信息

Senis Yotis A, Craig Andrew W B, Greer Peter A

机构信息

Department of Pathology, Queen's University, Kingston, Ontario, Canada.

出版信息

Exp Hematol. 2003 Aug;31(8):673-81. doi: 10.1016/s0301-472x(03)00107-3.

Abstract

OBJECTIVE

The highly related protein-tyrosine kinases Fps (also called Fes) and Fer are sole members of a subfamily of kinases. In this study, knock-in mice harboring kinase-inactivating mutations in both fps and fer alleles were used to assess functional redundancy between Fps and Fer kinases in regulating hematopoiesis.

METHODS

Mice harboring kinase-inactivating mutations in fps and fer alleles were generated previously. Compound homozygous mice were bred that lack both Fps and Fer kinase activities and progeny were analyzed for potential defects in viability and fertility. Potential differences in hematopoiesis were analyzed by lineage analysis of bone marrow cells, peripheral blood counts, and hematopoietic progenitor cell colony-forming assays.

RESULTS

Mice devoid of both Fps and Fer kinase activities were viable and displayed reduced fertility. Circulating levels of neutrophils, erythrocytes, and platelets were elevated in compound mutant mice compared to wild-type controls, suggesting that hematopoiesis is deregulated in the absence of Fps and Fer kinases. Compound mutant mice also showed reduced overall bone marrow cellularity, and lineage analysis revealed elevated CD11b(hi)Ly-6G(lo) myeloid cells, which may reflect increased granulocyte progenitors. Although no differences in the overall number of granulocyte/monocyte colony-forming progenitors were observed, qualitative differences in myeloid colonies from compound mutant mice suggested a role for Fps and Fer kinases in regulating cell-cell adhesion or a skewing in cellularity of colonies.

CONCLUSIONS

Mice lacking both Fps and Fer kinase activities develop normally, show reduced fertility, and display defects in hematopoiesis, thus providing evidence for functional redundancy between Fps and Fer kinases in regulating hematopoiesis.

摘要

目的

高度相关的蛋白酪氨酸激酶Fps(也称为Fes)和Fer是激酶亚家族的唯一成员。在本研究中,利用在fps和fer等位基因中均携带激酶失活突变的敲入小鼠来评估Fps和Fer激酶在调节造血过程中的功能冗余性。

方法

先前已培育出在fps和fer等位基因中携带激酶失活突变的小鼠。培育出缺乏Fps和Fer激酶活性的复合纯合小鼠,并分析其后代在活力和生育力方面的潜在缺陷。通过对骨髓细胞进行谱系分析、外周血细胞计数和造血祖细胞集落形成试验,分析造血过程中的潜在差异。

结果

缺乏Fps和Fer激酶活性的小鼠存活且生育力降低。与野生型对照相比,复合突变小鼠循环中的中性粒细胞、红细胞和血小板水平升高,这表明在缺乏Fps和Fer激酶的情况下造血功能失调。复合突变小鼠的整体骨髓细胞密度也降低,谱系分析显示CD11b(hi)Ly-6G(lo)髓样细胞增多,这可能反映了粒细胞祖细胞增加。虽然在粒细胞/单核细胞集落形成祖细胞的总数上未观察到差异,但复合突变小鼠髓样集落的定性差异表明Fps和Fer激酶在调节细胞间黏附或集落细胞密度偏差方面发挥作用。

结论

缺乏Fps和Fer激酶活性的小鼠发育正常,但生育力降低且造血功能存在缺陷,从而为Fps和Fer激酶在调节造血过程中的功能冗余性提供了证据。

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