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将细胞命运特化与平面极性联系起来:R3/R4光感受器的确定是解读卷曲蛋白介导的极性信号的先决条件。

Linking cell-fate specification to planar polarity: determination of the R3/R4 photoreceptors is a prerequisite for the interpretation of the Frizzled mediated polarity signal.

作者信息

Fanto M, Mayes C A, Mlodzik M

机构信息

EMBL, Developmental Biology Programme, Meyerhofstrasse 1, 69117 Heidelberg, Germany.

出版信息

Mech Dev. 1998 Jun;74(1-2):51-8. doi: 10.1016/s0925-4773(98)00063-x.

Abstract

The adult eye of Drosophila is a highly ordered structure composed of about 800 ommatidia, each displaying precise polarity. The planar polarity is reflected in the mirror-symmetric arrangement of ommatidia relative to the dorso-ventral midline, the equator. This arrangement is generated when ommatidia rotate towards the equator and the photoreceptor R3 displaces R4 creating different chiral forms in each half. Analysis of ommatidia mosaic for the tissue polarity gene frizzled (fz) has shown that the presence of a single Fz+ photoreceptor cell within the R3/ R4 pair is critical for the direction of rotation and chirality. By analysing clones mutant for seven-up (svp), in which R3/R4 precursors reside in their normal positions and become photoreceptor neurones but fail to adopt the normal R3/R4 fate, we find that the R3/R4 photoreceptor subtype specification is a prerequisite for planar polarisation in the eye. Moreover, in mosaic R3/R4 pairs we find that the svp- cell always adopts the R4 position. This bias is reminiscent of what happens in fz mosaic R3/R4 pairs, where the fz- cell also almost always adopts the R4 position. In addition, we find that in genotypes where too many cells adopt the R3/R4 fate, ommatidial polarity is also disturbed. Taken together, these data imply that correct specification of a single R3 cell per ommatidium is essential for the normal interpretation of the Fz-mediated polarity signal.

摘要

果蝇的成虫眼是一种高度有序的结构,由约800个小眼组成,每个小眼都显示出精确的极性。平面极性反映在小眼相对于背腹中线(赤道)的镜像对称排列中。这种排列是在小眼向赤道旋转且光感受器R3取代R4时产生的,从而在每一半中形成不同的手性形式。对组织极性基因卷曲(fz)的小眼镶嵌分析表明,R3/R4对中单个Fz+光感受器细胞的存在对于旋转方向和手性至关重要。通过分析七上(svp)突变体克隆,其中R3/R4前体细胞位于其正常位置并成为光感受器神经元,但未能采用正常的R3/R4命运,我们发现R3/R4光感受器亚型的指定是眼中平面极化的先决条件。此外,在镶嵌的R3/R4对中,我们发现svp-细胞总是占据R4位置。这种偏向让人联想到fz镶嵌R3/R4对中发生的情况,其中fz-细胞也几乎总是占据R4位置。此外,我们发现在太多细胞采用R3/R4命运的基因型中,小眼极性也会受到干扰。综上所述,这些数据表明每个小眼正确指定单个R3细胞对于Fz介导的极性信号的正常解读至关重要。

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