Prox1 function is crucial for mouse lens-fibre elongation
- 1 March 1999
- journal article
- research article
- Published by Springer Nature in Nature Genetics
- Vol. 21 (3) , 318-322
- https://doi.org/10.1038/6844
Abstract
Although insights have emerged regarding genes controlling the early stages of eye formation, little is known about lens-fibre differentiation and elongation. The expression pattern of the Prox1 homeobox gene suggests it has a role in a variety of embryonic tissues, including lens1. To analyse the requirement for Prox1 during mammalian development, we inactivated the locus in mice. Homozygous Prox1-null mice die at mid-gestation from multiple developmental defects; here we describe the specific effect on lens development. Prox1 inactivation causes abnormal cellular proliferation, downregulated expression of the cell-cycle inhibitors Cdkn1b (also known as p27KIP1) and Cdkn1c (also known as p57KIP2), misexpression of E-cadherin and inappropriate apoptosis. Consequently, mutant lens cells fail to polarize and elongate properly, resulting in a hollow lens. Our data provide evidence that the progression of terminal fibre differentiation and elongation is dependent on Prox1 activity during lens development.Keywords
This publication has 12 references indexed in Scilit:
- Cooperation between the Cdk inhibitors p27KIP1 and p57KIP2 in the control of tissue growth and developmentGenes & Development, 1998
- Sox1 directly regulates the gamma -crystallin genes and is essential for lens development in miceGenes & Development, 1998
- Altered cell differentiation and proliferation in mice lacking p57KIP2 indicates a role in Beckwith–Wiedemann syndromeNature, 1997
- Apoptosis in mammalian eye development: lens morphogenesis, vascular regression and immune privilegeCell Death & Differentiation, 1997
- Vimentin and CP49/filensin form distinct networks in the lens which are independently modulated during lens fibre cell differentiationJournal of Cell Science, 1995
- Prox 1, a prospero-related homeobox gene expressed during mouse developmentMechanisms of Development, 1993
- Identification of programmed cell death in situ via specific labeling of nuclear DNA fragmentation.The Journal of cell biology, 1992
- A frameshift mutation in the γE–crystallin gene of the Elo mouseNature Genetics, 1992
- Temporal regulation of six crystallin transcripts during mouse lens developmentExperimental Eye Research, 1992
- Homeotic transformations of murine vertebrae and concomitant alteration of Hox codes induced by retinoic acidCell, 1991