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Atypical protein kinase C (aPKCζ and aPKCλ) is dispensable for mammalian hematopoietic stem cell activity and blood formation

机译:非典型蛋白激酶C(aPKCζ和aPKCλ)对于哺乳动物的造血干细胞活性和血液形成是必不可少的

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摘要

The stem-cell pool is considered to be maintained by a balance between symmetric and asymmetric division of stem cells. The cell polarity model proposes that the facultative use of symmetric and asymmetric cell division is orchestrated by a polarity complex consisting of partitioning-defective proteins Par3 and Par6, and atypical protein kinase C (aPKCζ and aPKCλ), which regulates planar symmetry of dividing stem cells with respect to the signaling microenvironment. However, the role of the polarity complex is unexplored in mammalian adult stem-cell functions. Here we report that, in contrast to accepted paradigms, polarization and activity of adult hematopoietic stem cell (HSC) do not depend on either aPKCζ or aPKCλ or both in vivo. Mice, having constitutive and hematopoietic-specific (Vav1-Cre) deletion of aPKCζ and aPKCλ, respectively, have normal hematopoiesis, including normal HSC self-renewal, engraftment, differentiation, and interaction with the bone marrow microenvironment. Furthermore, inducible complete deletion of aPKCλ (Mx1-Cre) in aPKCζ−/− HSC does not affect HSC polarization, self-renewal, engraftment, or lineage repopulation. In addition, aPKCζ- and aPKCλ-deficient HSCs elicited a normal pattern of hematopoietic recovery secondary to myeloablative stress. Taken together, the expression of aPKCζ, aPKCλ, or both are dispensable for primitive and adult HSC fate determination in steady-state and stress hematopoiesis, contrary to the hypothesis of a unique, evolutionary conserved aPKCζ/λ-directed cell polarity signaling mechanism in mammalian HSC fate determination.
机译:干细胞库被认为是通过干细胞对称和不对称分裂之间的平衡来维持的。细胞极性模型表明,对称和不对称细胞分裂的兼用是由极性缺陷复合物组成的,该复合物由分区缺陷蛋白Par3和Par6以及非典型蛋白激酶C(aPKCζ和aPKCλ)组成,后者调节分裂干细胞的平面对称性关于信号微环境。然而,极性复合物的作用在哺乳动物成体干细胞功能中尚待探索。在这里,我们报道,与公认的范例相反,成年造血干细胞(HSC)的极化和活性不依赖于aPKCζ或aPKCλ或两者都不依赖于体内。分别具有aPKCζ和aPKCλ组成型和造血特异性(Vav1-Cre)缺失的小鼠具有正常的造血功能,包括正常的HSC自我更新,植入,分化以及与骨髓微环境的相互作用。此外,aPKCζ-/-HSC中可诱导的aPKCλ(Mx1-Cre)的完全缺失不影响HSC极化,自我更新,移入或谱系再繁殖。此外,aPKCζ和aPKCλ缺陷的HSCs引起继发于清髓性应激的造血恢复的正常模式。综上所述,aPKCζ,aPKCλ或两者的表达对于稳定和应激造血过程中原始和成年HSC命运的确定是必不可少的,这与哺乳动物中独特的,进化上保守的aPKCζ/λ定向细胞极性信号转导机制的假设相反HSC命运决定。

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