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含有同源异型框的基因Wariai调控盘基网柄菌中的前后模式形成和细胞类型稳态。

The homeobox-containing gene Wariai regulates anterior-posterior patterning and cell-type homeostasis in Dictyostelium.

作者信息

Han Z, Firtel R A

机构信息

Department of Biology, Center for Molecular Genetics, University of California, San Diego, La Jolla 92093-0634, USA.

出版信息

Development. 1998 Jan;125(2):313-25. doi: 10.1242/dev.125.2.313.

Abstract

We have identified a Dictyostelium gene, Wariai (Wri), that encodes a protein with a homeobox and seven ankyrin repeats; both domains are required for function. A null mutation results in a more than doubling of the size of the prestalk O (pstO) compartment, one of the anterior prestalk compartments lying along the anterior-posterior axis of the migrating slug. There is a concomitant decrease in the more posterior prespore domain and no change in the more anterior prestalk A (pstA) and prestalk AB (pstAB) domains. wri null cells also have a morphological defect consistent with an increase in the pstO cell population. Wri itself is preferentially expressed in the pstA but not the pstO compartment, raising the possibility that Wri regulation of pstO compartment size is nonautonomous. Analysis of chimeric organisms is consistent with this model. Development in Dictyostelium is highly regulative, with cells within the prestalk and prespore populations being able to transdifferentiate into other cells to maintain proper cell-type proportioning. Our results suggest that Wri controls cell-type proportioning, possibly by functioning as a negative regulator of a pathway mediating pstO cell differentiation and controlling the mechanism of homeostasis regulating the size of one or more of the cell-type compartments. Our results also suggest that homeobox gene regulation of anterior-posterior axis patterning may have evolved prior to the evolution of metazoans.

摘要

我们鉴定出一种盘基网柄菌基因,即Wariai(Wri),它编码一种含有同源异型框和七个锚蛋白重复序列的蛋白质;这两个结构域对于其功能都是必需的。无效突变导致前柄O(pstO)区室的大小增加一倍多,pstO区室是迁移蛞蝓沿前后轴排列的前柄区室之一。更靠后的前孢子区域随之减少,而更靠前的前柄A(pstA)和前柄AB(pstAB)区域没有变化。wri无效细胞还存在一种形态缺陷,这与pstO细胞群体增加一致。Wri本身在前柄A区室而非pstO区室中优先表达,这增加了Wri对pstO区室大小的调控是非自主调控的可能性。对嵌合生物的分析与该模型一致。盘基网柄菌的发育具有高度的调节性,前柄和前孢子群体中的细胞能够转分化为其他细胞以维持适当的细胞类型比例。我们的结果表明,Wri可能通过作为介导pstO细胞分化的途径的负调节因子并控制调节一个或多个细胞类型区室大小的稳态机制来控制细胞类型比例。我们的结果还表明,同源异型框基因对前后轴模式形成的调控可能在多细胞动物进化之前就已经进化出来了。

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