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斑马鱼基因cloche在造血过程中的细胞自主和非自主需求。

Cell-autonomous and non-autonomous requirements for the zebrafish gene cloche in hematopoiesis.

作者信息

Parker L, Stainier D Y

机构信息

Department of Biochemistry and Biophysics, Programs in Developmental Biology and Human Genetics, University of California, San Francisco, San Francisco, CA 94143-0448 USA.

出版信息

Development. 1999 Jun;126(12):2643-51. doi: 10.1242/dev.126.12.2643.

Abstract

Vertebrate embryonic hematopoiesis is a complex process that involves a number of cellular interactions, notably those occurring between endothelial and blood cells. The zebrafish cloche mutation affects both the hematopoietic and endothelial lineages from an early stage (Stainier, D. Y. R., Weinstein, B. M., Detrich, H. W. R., Zon, L. I. and Fishman, M. C. (1995) Development 121, 3141-3150). cloche mutants lack endocardium, as well as head and trunk endothelium, and nearly all blood cells. Cell transplantation studies have revealed that the endocardial defect in cloche is cell-autonomous: wild-type cells can form endocardium in mutant hosts, but mutant cells never contribute to the endocardium in wild-type or mutant hosts. In this paper, we analyze the cell-autonomy of the blood defect in cloche. The blood cell deficiency in cloche mutants could be an indirect effect of the endothelial defects. Alternatively, cloche could be required cell-autonomously in the blood cells themselves. To distinguish between these possibilities, we cotransplanted wild-type and mutant cells into a single wild-type host in order to compare their respective hematopoietic capacity. We found that transplanted wild-type cells were much more likely than mutant cells to contribute to circulating blood in a wild-type host. Furthermore, in the few cases where both wild-type and mutant donors contributed to blood in a wild-type host, the number of blood cells derived from the wild-type donor was always much greater than the number of blood cells derived from the mutant donor. These data indicate that cloche is required cell-autonomously in blood cells for their differentiation and/or proliferation. When we assessed early expression of the erythropoietic gene gata-1 in transplant recipients, we found that mutant blastomeres were as likely as wild-type blastomeres to give rise to gata-1-expressing cells in a wild-type host. Together, these two sets of data argue that cloche is not required cell-autonomously for the differentiation of red blood cells, as assayed by gata-1 expression, but rather for their proliferation and/or survival, as assayed by their contribution to circulating blood. In addition, we found that transplanted wild-type cells were less likely to express gata-1 in a mutant environment than in a wild-type one, suggesting that cloche also acts non-autonomously in red blood cell differentiation. This non-autonomous function of cloche in red blood cell differentiation may reflect its cell-autonomous requirement in the endothelial lineage. Thus, cloche appears to be required in erythropoiesis cell non-autonomously at a step prior to gata-1 expression, and cell-autonomously subsequently.

摘要

脊椎动物胚胎造血是一个复杂的过程,涉及许多细胞间相互作用,尤其是内皮细胞和血细胞之间的相互作用。斑马鱼的cloche突变从早期阶段就影响造血和内皮细胞谱系(Stainier, D. Y. R., Weinstein, B. M., Detrich, H. W. R., Zon, L. I. 和 Fishman, M. C. (1995) Development 121, 3141 - 3150)。cloche突变体缺乏心内膜以及头部和躯干的内皮细胞,并且几乎所有血细胞都缺失。细胞移植研究表明,cloche的心内膜缺陷是细胞自主的:野生型细胞可以在突变宿主中形成心内膜,但突变细胞在野生型或突变宿主中从不参与形成心内膜。在本文中,我们分析了cloche中血液缺陷的细胞自主性。cloche突变体中的血细胞缺乏可能是内皮缺陷的间接影响。或者,cloche可能在血细胞自身中是细胞自主所需的。为了区分这些可能性,我们将野生型和突变型细胞共移植到单个野生型宿主中,以比较它们各自的造血能力。我们发现,移植的野生型细胞比突变型细胞更有可能在野生型宿主中参与循环血液的形成。此外,在少数野生型和突变型供体细胞都对野生型宿主中的血液有贡献的情况下,源自野生型供体的血细胞数量总是远多于源自突变型供体的血细胞数量。这些数据表明,cloche在血细胞分化和/或增殖中是细胞自主所需的。当我们评估移植受体中促红细胞生成基因gata - 1的早期表达时,我们发现突变的卵裂球与野生型卵裂球一样有可能在野生型宿主中产生表达gata - 1的细胞。综合这两组数据表明,就gata - 1表达所检测的而言,cloche在红细胞分化中不是细胞自主所需的,而是就它们对循环血液的贡献所检测的而言,在红细胞增殖和/或存活中是细胞自主所需的。此外,我们发现移植的野生型细胞在突变环境中比在野生型环境中更不容易表达gata - 1,这表明cloche在红细胞分化中也有非自主作用。cloche在红细胞分化中的这种非自主功能可能反映了它在内皮细胞谱系中的细胞自主需求。因此,cloche似乎在红细胞生成中,在gata - 1表达之前的一个步骤中有非自主需求,随后有细胞自主需求。

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