Pitx3 has been identified as the causative locus in a developmental eye mutation associated with mammalian anterior segment dysgenesis, congenital cataracts, and aphakia. In recent studies of frog eye development we discovered that pitx3 expresses symmetrically in the somites and lateral plate mesoderm and asymmetrically during cardiac and gut looping. We report that disruption of pitx3 activity on one side of an embryo relative to the other, either by over- or underexpression of pitx3, elicits a crooked dorsal axis in embryos that is a consequence of a retarded progression through somitogenesis. Unlike in amniotes, Xenopus somites form as cohorts of presomitic cells that rotate perpendicular to the dorsal axis. Since no vertebral anomalies have been reported in mouse and human Pitx3 mutants, we attempt to distinguish whether the segmentation clock is uniquely affected in frog or if the pitx3 perturbation inhibits the cellular changes that are necessary to rotation of presomitic cells. In Xenopus, pitx3 appears to inhibit the rotation of presomitic cell cohorts and to be necessary to the bilaterally symmetric expression of pitx2 in somites.
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http://dx.doi.org/10.1139/bcb-2012-0057 | DOI Listing |
Semin Ophthalmol
December 2024
Kallam Anji Reddy Molecular Genetics Laboratory, Prof. Brien Holden Eye Research Center, L V Prasad Eye Institute, Hyderabad, Telangana, India.
Background: The anterior segment of the eye plays a crucial role in maintaining the normal intraocular pressure and vision. Developmental defects in the anterior segment structures lead to anterior segment dysgenesis (ASD) and primary congenital glaucoma (PCG), which share overlapping clinical features. Several genes have been mapped and characterized in ASD, some of which are also involved in other glaucoma phenotypes.
View Article and Find Full Text PDFMol Syndromol
December 2024
Department of Medical Genetics, University of Health Sciences, Van Training and Research Hospital, Van, Turkey.
Introduction: S-adenosylhomocysteine hydrolase (SAHH) is one of the enzymes involved in converting methionine to homocysteine with transmethylation processes. Methyltransfer reactions are impaired in SAHH deficiency. SAHH deficiency is multisystemic and antenatal onset disorder.
View Article and Find Full Text PDFCell Biosci
October 2024
Swammerdam Institute for Life Sciences, University of Amsterdam, Room C3.104, Science Park 904, 1098 XH, Amsterdam, The Netherlands.
Background: Parkinson's disease is characterized by a progressive loss of dopaminergic neurons in the nigrostriatal pathway, leading to dopamine deficiency and motor impairments. Current treatments, such as L-DOPA, provide symptomatic relief but result in off-target effects and diminished efficacy over time. This study explores an alternative approach by investigating the activation of tyrosine hydroxylase, the rate-limiting enzyme in dopamine synthesis.
View Article and Find Full Text PDFDevelopment
August 2024
Department of Neurobiology, University of Chicago, Chicago, IL 60637, USA.
Terminal selectors are transcription factors that control neuronal identity by regulating expression of key effector molecules, such as neurotransmitter biosynthesis proteins and ion channels. Whether and how terminal selectors control neuronal connectivity is poorly understood. Here, we report that UNC-30 (PITX2/3), the terminal selector of GABA nerve cord motor neurons in Caenorhabditis elegans, is required for neurotransmitter receptor clustering, a hallmark of postsynaptic differentiation.
View Article and Find Full Text PDFbioRxiv
June 2024
Department of Pharmacology and Toxicology, Medical College of Georgia at Augusta University, Augusta 30912, Georgia, USA.
Gangliosides are sialylated glycosphingolipids with essential but enigmatic functions in healthy and disease brains. GD3 is the predominant species in neural stem cells (NSCs) and GD3-synthase (sialyltransferase II; ) knockout (GD3S-KO) revealed reduction of postnatal NSC pools with severe behavioral deficits including cognitive impairment, depression-like phenotypes, and olfactory dysfunction. Exogenous administration of GD3 significantly restored the NSC pools and enhanced the stemness of NSCs with multipotency and self-renewal, followed by restored neuronal functions.
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