Mutations of the NF1 locus cause neurofibromatosis 1 (NF1), a clinically variable autosomal dominant disease. Expression of neurofibromin, the protein product of the NF1 gene, is regulated in a tissue- and developmentally-specific fashion, but the basis for this regulation is not understood. We used phylogenetic footprinting and other bioinformatic methods to identify potential transcriptional regulatory regions in the 5' upstream region and intron 1 of the NF1 gene from human, mouse, rat, and pufferfish. Three genomic segments that have equal or higher homology than the coding region were found in the NF1 5' upstream region, and four more very highly homologous regions were found in intron 1. Five of these highly homologous regions are confidently predicted to contain transcription factor binding sites. One highly homologous segment in the 5' upstream region spans the transcription start site and contains several potential transcription factor binding sites. This segment includes a novel 24-bp sequence (acttccggtggggtgtcatggcgg) that lies 310-333 bp upstream of the translation initiation site. This sequence, which is identical in human, mouse, and rat and differs by only 1-bp in Fugu, may contain the core promoter element for NF1 transcription.
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http://dx.doi.org/10.1002/ajmg.a.30699 | DOI Listing |
Plant Physiol
January 2025
Beijing Key Laboratory of Plant Gene Resources and Biotechnology for Carbon Reduction and Environmental Improvement, and College of Life Sciences, Capital Normal University, Beijing 100048, China.
Photoperiodic regulation of flowering time plays a critical role in plant reproductive success and crop yield. In Arabidopsis thaliana, the expression of the CONSTANS (CO) gene is closely regulated by day length and is modulated by both environmental and endogenous cues for precise control over flowering. Our findings reveal that the phytohormone brassinosteroid (BR) pathway represses flowering by inhibiting the expression of both CO and Flowering Locus T (FT).
View Article and Find Full Text PDFCan Fam Physician
January 2025
Vice-Chair of Quality and Innovation in the DFCM at U of T; Associate Professor in the Faculty of Medicine and the Institute of Health Policy, Management and Evaluation at U of T; Scientist in the MAP Centre for Urban Health Solutions at St Michael's Hospital; and a staff physician in the DFCM at St Michael's Hospital, Unity Health Toronto.
Objective: To understand the role of primary care in the COVID-19 pandemic to provide insight into its functioning and inform potential reforms.
Composition Of The Committee: The now dissolved Ontario COVID-19 Science Advisory Table (Science Table) was formed in July 2020 to provide decision makers and the public with a synthesis of rapidly evolving evidence related to COVID-19. The Science Table was based at the Dalla Lana School of Public Health at the University of Toronto, and supported by Public Health Ontario.
Prog Cardiovasc Dis
January 2025
HealthPartners Institute, Minneapolis, MN, United States of America; Healthy Living for Pandemic Event Protection (HL - PIVOT) Network, Chicago, IL, United States of America; College of Applied Health Sciences, University of Illinois Chicago, Chicago, IL, United States of America.
The Roundtable on Obesity Solutions (ROOS), established in 2014, is a unique organization of multisectoral voices addressing the public health challenge of obesity. The ROOS brings together practitioners, researchers, funders, companies, health systems, government agencies, and the lived experience to dialogue and guide the national conversation about the multilevel challenges and opportunities related to obesity. This paper presents insights and key learnings from a symposium developed to celebrating the 10th Anniversary of the ROOS.
View Article and Find Full Text PDFSoft Matter
January 2025
Microfluidics and Microscale Transport Processes Laboratory, Department of Mechanical Engineering, Indian Institute of Technology Guwahati, Guwahati-781039, Assam, India.
This work estimates Michaelis-Menten kinetics parameters for nutrient transport under varying flow rates in the soft roots of Indian mustard () using a plant fluidic device. To find the metallic components within the roots, inductively coupled plasma mass spectrometry (ICP-MS) analysis was performed. The flow rate-dependent metabolic changes were examined using Raman spectral analysis.
View Article and Find Full Text PDFSci Rep
January 2025
Department of Water Engineering and Management, Tarbiat Modares University, Tehran, Iran.
The Hirmand Transboundary River Basin (HTRB), shared by Afghanistan, Iran, and Pakistan, is a hydrologically critical and politically sensitive region. This basin sustains livelihoods, ecosystems, and agriculture in a region plagued by climatic variability and geopolitical tensions. The Hirmand River, which forms the heart of this basin, faces severe morphological and discharge changes due to upstream water management, climatic shifts, and land use changes, directly impacting downstream ecosystems and human populations.
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