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四关节蛋白在平面极性和肢体模式形成中的多种作用。

Multiple roles for four-jointed in planar polarity and limb patterning.

作者信息

Zeidler M P, Perrimon N, Strutt D I

机构信息

Department of Genetics, Harvard Medical School, 200 Longwood Avenue, Boston, Massachusetts 02115, USA.

出版信息

Dev Biol. 2000 Dec 15;228(2):181-96. doi: 10.1006/dbio.2000.9940.

Abstract

Insect cuticles have been a model system for the study of planar polarity for many years and a number of genes required for this process have been identified. These genes organise the polarised arrangement of hairs on the legs, wings, thorax, and abdomen of adult Drosophila. It has previously been shown that four-jointed is involved in planar polarity decisions in the eye as well as proximal distal leg and wing development. We now present evidence that four-jointed is expressed in a gradient through the developing wing and show that it is required for planar polarity determination in both the wing and the abdomen. Clones of cells either lacking or ectopically expressing four-jointed cause both autonomous and nonautonomous repolarisation of hairs in these tissues. We propose that the inferred four-jointed expression gradient is important for planar polarity establishment and that local inversions of the gradient by the clones are the probable cause of the observed polarity phenotypes. In addition we observe defects in wing vein development. The subtle phenotypes of mutant flies, and the diverse patterning processes in which it is involved, suggest that four-jointed may act as a modifier of the activity of multiple other signalling factors.

摘要

多年来,昆虫角质层一直是研究平面极性的模型系统,并且已经鉴定出该过程所需的许多基因。这些基因决定了成年果蝇腿部、翅膀、胸部和腹部毛发的极化排列。先前已经表明,四关节蛋白参与眼睛的平面极性决定以及腿部和翅膀的近端-远端发育。我们现在提供证据表明,四关节蛋白在发育中的翅膀中呈梯度表达,并表明它是翅膀和腹部平面极性确定所必需的。缺乏或异位表达四关节蛋白的细胞克隆会导致这些组织中毛发的自主和非自主重新极化。我们提出,推断的四关节蛋白表达梯度对于平面极性的建立很重要,并且克隆导致的梯度局部反转可能是观察到的极性表型的原因。此外,我们观察到翅脉发育存在缺陷。突变果蝇的细微表型以及它所涉及的多种图案形成过程表明,四关节蛋白可能作为多种其他信号因子活性的调节剂。

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