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Chx10是阻止光感受器分化所必需的,但对于出生后视网膜中的祖细胞增殖则是可有可无的。

Chx10 is required to block photoreceptor differentiation but is dispensable for progenitor proliferation in the postnatal retina.

作者信息

Livne-Bar Izzy, Pacal Marek, Cheung Melissa C, Hankin Mark, Trogadis Judy, Chen Danian, Dorval Kimberley M, Bremner Rod

机构信息

Toronto Western Research Institute, University Health Network.

出版信息

Proc Natl Acad Sci U S A. 2006 Mar 28;103(13):4988-93. doi: 10.1073/pnas.0600083103. Epub 2006 Mar 17.

Abstract

In the Chx10-null ocular retardation (or(J)) mouse, retinal progenitor cell (RPC) proliferation is impaired, and bipolar neurons, a late born cell type, fail to differentiate. It is unclear whether Chx10 is required to maintain proliferation throughout retinogenesis or whether the bipolar cell defect is an indirect effect of growth arrest. We show that Chx10 is dispensable for late-stage RPC proliferation but is essential to promote bipolar cell genesis in place of rods. Ectopic Chx10 expression drove bipolar instead of rod cell differentiation without affecting division. Converting Chx10 to an activator impaired bipolar cell differentiation, implying that repression is important for Chx10 activity. In the Chx10 null or(J) retina, only a small fraction of cells expressing mutated Chx10 mRNA were rods, but this fraction increased after p27(Kip1) inactivation, which partially rescues proliferation. Most significantly, acute Chx10 knockdown in the postnatal retina promoted rods in place of bipolar neurons without affecting division. Thus, Chx10 directly controls bipolar cell genesis by inhibiting rod differentiation independent of its temporally limited early effect on RPC proliferation.

摘要

在Chx10基因敲除的小眼畸形(or(J))小鼠中,视网膜祖细胞(RPC)的增殖受损,而双极神经元(一种晚期生成的细胞类型)无法分化。目前尚不清楚Chx10在整个视网膜生成过程中是否是维持增殖所必需的,或者双极细胞缺陷是否是生长停滞的间接影响。我们发现,Chx10对于晚期RPC增殖并非必需,但对于促进双极细胞生成以替代视杆细胞至关重要。异位表达Chx10会驱动双极细胞而非视杆细胞分化,且不影响细胞分裂。将Chx10转化为激活剂会损害双极细胞分化,这意味着抑制作用对Chx10的活性很重要。在Chx10基因敲除的or(J)视网膜中,只有一小部分表达突变Chx10 mRNA的细胞是视杆细胞,但在p27(Kip1)失活后这一比例增加,p27(Kip1)失活可部分挽救增殖。最显著的是,在出生后视网膜中急性敲低Chx10会促进视杆细胞生成以替代双极神经元,且不影响细胞分裂。因此,Chx10通过抑制视杆细胞分化直接控制双极细胞生成,而与其对RPC增殖的早期时间限制效应无关。

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本文引用的文献

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CHX10 targets a subset of photoreceptor genes.
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