Fgf8 promotes survival of nephron progenitors by regulating BAX/BAK-mediated apoptosis

IF 2.2 3区 生物学 Q4 CELL BIOLOGY
Matthew J. Anderson , Salvia Misaghian , Nirmala Sharma , Alan O. Perantoni , Mark Lewandoski
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Abstract

Fibroblast growth factors (Fgfs) have long been implicated in processes critical to embryonic development, such as cell survival, migration, and differentiation. Several mouse models of organ development ascribe a prosurvival requirement specifically to FGF8. Here, we explore the potential role of prosurvival FGF8 signaling in kidney development. We have previously demonstrated that conditional deletion of Fgf8 in the mesodermal progenitors that give rise to the kidney leads to renal aplasia in the mutant neonate. Deleterious consequences caused by loss of FGF8 begin to manifest by E14.5 when massive aberrant cell death occurs in the cortical nephrogenic zone in the rudimentary kidney as well as in the renal vesicles that give rise to the nephrons. To rescue cell death in the Fgf8 mutant kidney, we inactivate the genes encoding the pro-apoptotic factors BAK and BAX. In a wild-type background, the loss of Bak and Bax abrogates normal cell death and has minimal effect on renal development. However, in Fgf8 mutants, the combined loss of Bak and Bax rescues aberrant cell death in the kidneys and restores some measure of kidney development: 1) the nephron progenitor population is greatly increased; 2) some glomeruli form, which are rarely observed in Fgf8 mutants; and 3) kidney size is rescued by about 50% at E18.5. The development of functional nephrons, however, is not rescued. Thus, FGF8 signaling is required for nephron progenitor survival by regulating BAK/BAX and for subsequent steps involving, as yet, undefined roles in kidney development.

Fgf8通过调节BAX/ bak介导的细胞凋亡促进肾细胞祖细胞的存活
成纤维细胞生长因子(Fgfs)长期以来一直与胚胎发育的关键过程有关,如细胞存活、迁移和分化。一些器官发育的小鼠模型将促存活需求特别归因于FGF8。在这里,我们探讨了促存活FGF8信号在肾脏发育中的潜在作用。我们之前已经证明,引起肾脏的中胚层祖细胞中Fgf8的条件性缺失会导致突变新生儿的肾脏发育不全。当在发育不全的肾脏的皮质肾原区以及产生肾单位的肾小泡中发生大量异常细胞死亡时,由FGF8缺失引起的有害后果在E14.5开始显现。为了挽救Fgf8突变肾脏中的细胞死亡,我们使编码促凋亡因子BAK和BAX的基因失活。在野生型背景下,Bak和Bax的缺失消除了正常细胞死亡,对肾脏发育的影响最小。然而,在Fgf8突变体中,Bak和Bax的联合缺失挽救了肾脏中异常的细胞死亡,并恢复了肾脏发育的某些指标:1)肾单位祖细胞数量大大增加;2) 一些肾小球形式,在Fgf8突变体中很少观察到;和3)在E18.5时,肾脏大小被挽救了约50%。然而,功能性肾单位的发育并没有得到挽救。因此,FGF8信号传导是通过调节BAK/BAX实现肾单位祖细胞存活所必需的,并且是涉及在肾脏发育中尚未确定的作用的后续步骤所必需的。
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来源期刊
Differentiation
Differentiation 生物-发育生物学
CiteScore
4.10
自引率
3.40%
发文量
38
审稿时长
51 days
期刊介绍: Differentiation is a multidisciplinary journal dealing with topics relating to cell differentiation, development, cellular structure and function, and cancer. Differentiation of eukaryotes at the molecular level and the use of transgenic and targeted mutagenesis approaches to problems of differentiation are of particular interest to the journal. The journal will publish full-length articles containing original work in any of these areas. We will also publish reviews and commentaries on topics of current interest. The principal subject areas the journal covers are: • embryonic patterning and organogenesis • human development and congenital malformation • mechanisms of cell lineage commitment • tissue homeostasis and oncogenic transformation • establishment of cellular polarity • stem cell differentiation • cell reprogramming mechanisms • stability of the differentiated state • cell and tissue interactions in vivo and in vitro • signal transduction pathways in development and differentiation • carcinogenesis and cancer • mechanisms involved in cell growth and division especially relating to cancer • differentiation in regeneration and ageing • therapeutic applications of differentiation processes.
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