Lens development is an excellent model for genetic and biochemical studies of embryonic induction, cell cycle regulation, cellular differentiation and signal transduction. Differentiation of lens is characterized by lens-preferred expression and accumulation of water-soluble proteins, crystallins. Crystallins are required for light transparency, refraction and maintenance of lens integrity. Here, we review mechanisms of lens-preferred expression of crystallin genes by employing synergism between developmentally regulated DNA-binding transcription factors: Pax6, c-Maf, MafA/L-Maf, MafB, NRL, Sox2, Sox1, RARbeta/RXRbeta, RORalpha, Prox1, Six3, gammaFBP-B and HSF2. These factors are differentially expressed in lens precursor cells, lens epithelium and primary and secondary lens fibers. They exert their function in combination with ubiquitously expressed factors (e.g. AP-1, CREB, pRb, TFIID and USF) and co-activators/chromatin remodeling proteins (e.g. ASC-2 and CBP/p300). A special function belongs to Pax6, a paired domain and homeodomain-containing protein, which is essential for lens formation. Pax6 is expressed in lens progenitor cells before the onset of crystallin expression and it serves as an important regulatory factor required for expression of c-Maf, MafA/L-Maf, Six3, Prox1 and retinoic acid signaling both in lens precursor cells and the developing lens. The roles of these factors are illustrated by promoter studies of mouse alphaA-, alphaB-, gammaF- and guinea pig zeta-crystallins. Pax6 forms functional complexes with a number of transcription factors including the retinoblastoma protein, pRb, MafA, Mitf and Sox2. We present novel data showing that pRb antagonizes Pax6-mediated activation of the alphaA-crystallin promoter likely by inhibiting binding of Pax6 to DNA.
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http://dx.doi.org/10.1387/ijdb.041866ac | DOI Listing |
Crystallin proteins serve as both essential structural and as well as protective components of the ocular lens and are required for the transparency and light refraction properties of the organ. The mouse lens crystallin proteome is represented by αA-, αB-, βA1-, βA2-, βA3-, βA4-, βB1-, βB2-, βB3-, γA-, γB-, γC-, γD-, γE, γF-, γN-, and γS-crystallin proteins encoded by 16 genes. Their mutations are responsible for lens opacification and early onset cataract formation.
View Article and Find Full Text PDFInf Commun Soc
April 2024
Department of Ethics and Political Philosophy, Radboud University Nijmegen, Nijmegen, the Netherlands.
In the last decade, large technology companies have started many initiatives to stimulate and innovate in the sphere of medical research. A prominent example is the ResearchKit software framework launched by tech giant Apple in 2015. This software framework enables medical researchers to develop research apps on the iPhone that collect and access diverse types of research data.
View Article and Find Full Text PDFAm J Lifestyle Med
January 2025
Department of Quality of Life Sciences, University of Bologna-Alma Mater Studiorum, Bologna, Italy.
Cardiovascular disease (CVD) remains a significant global health concern for women, influenced by a complex interplay of social, economic, and environmental factors. This article examines cardiovascular risk through the lens of the exposome, which encompasses all environmental exposures from conception onward, including pollution, diet, and chronic stress. Social determinants such as socioeconomic status (SES), education, and stress management play crucial roles in shaping women's cardiovascular health.
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Bascom Palmer Eye Institute, Department of Ophthalmology, University of Miami Miller School of Medicine, Miami FL, USA.
Am J Ophthalmol Case Rep
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Capital Health, Trenton, NJ, USA.
Optic capture of a three-piece lens in the absence of posterior capsule support is an effective strategy for stabilizing and sequestering the optic to reduce the risk of dislocation and UGH syndrome compared to sulcus placement. We present a novel technique that facilitates optic capture in the presence of a contracted, fibrotic rhexis opening, while minimizing stress on the zonules by using iris retractors to assist in stabilization and expansion of the rhexis, followed by direct injection of the optic of the lens behind the anterior capsule opening into an optic captured configuration.
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