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VDRE
Vitamin D response element (VDRE) is a type of DNA sequence that is found in the promoter region of vitamin D regulated genes. This sequence binds the vitamin D receptor (VDR), when complexed with calcitriol (1,25(OH)2D), the active form of vitamin D, and so regulates the expression of many genes. These response elements typically consist of two conserved hexameric half-sites separated by a three nucleotide spacer, referred to as a DR3 (for direct repeat spaced by 3 type element). The sequence of a VDRE can have a strong influence on the degree of protein binding, particularly at the fifth position in the half-site, and many studies have focused on synthetic variations of response elements and not naturally occurring sequences. The VDR is widely distributed in tissues, and is not restricted to those tissues considered the classic targets of vitamin D. The VDR upon binding to 1,25(OH)2D heterodimerizes with other nuclear hormone receptors, in particular the family of retinoid X recep ...
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Vitamin D
Vitamin D is a group of fat-soluble secosteroids responsible for increasing intestinal absorption of calcium, magnesium, and phosphate, and many other biological effects. In humans, the most important compounds in this group are vitamin D3 (cholecalciferol) and vitamin D2 (ergocalciferol). The major natural source of the vitamin is synthesis of cholecalciferol in the lower layers of epidermis of the skin through a chemical reaction that is dependent on sun exposure (specifically UVB radiation). Cholecalciferol and ergocalciferol can be ingested from the diet and supplements. Only a few foods, such as the flesh of fatty fish, naturally contain significant amounts of vitamin D. In the U.S. and other countries, cow's milk and plant-derived milk substitutes are fortified with vitamin D, as are many breakfast cereals. Mushrooms exposed to ultraviolet light contribute useful amounts of vitamin D2. Dietary recommendations typically assume that all of a person's vitamin D is taken ...
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Response Element
Response elements are short sequences of DNA within a gene Promoter (genetics), promoter or Enhancer (genetics), enhancer region that are able to bind specific transcription factors and regulate Transcription (genetics), transcription of genes. Under conditions of stress, a transcription activator protein binds to the response element and stimulates transcription. If the same response element sequence is located in the control regions of different genes, then these genes will be activated by the same stimuli, thus producing a coordinated response. Hormone response element A hormone response element (HRE) is a short sequence of DNA within the Promoter (biology), promoter of a gene, that is able to bind to a specific hormone receptor complex and therefore regulate Transcription (genetics), transcription. The sequence is most commonly a pair of inverted repeats separated by three nucleotides, which also indicates that the receptor binds as a protein dimer, dimer. Specifically, HRE resp ...
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Vitamin D Receptor
The vitamin D receptor (VDR also known as the calcitriol receptor) is a member of the nuclear receptor family of transcription factors. Calcitriol (the active form of vitamin D, 1,25-(OH)2vitamin D3) binds to VDR, which then forms a heterodimer with the retinoid-X receptor. The VDR heterodimer then enters the nucleus and binds to Vitamin D responsive elements (VDRE) in genomic DNA. VDR binding results in expression or transrepression of many specific gene products. VDR is also involved in microRNA-directed post transcriptional mechanisms. In humans, the vitamin D receptor is encoded by the ''VDR'' gene located on chromosome 12q13.11. VDR is expressed in most tissues of the body, and regulates transcription of genes involved in intestinal and renal transport of calcium and other minerals. Glucocorticoids decrease VDR expression. Many types of immune cells also express VDR. Function The VDR gene encodes the nuclear hormone receptor for vitamin D. The most potent natural ag ...
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Calcitriol
Calcitriol is the active form of vitamin D, normally made in the kidney. It is also known as 1,25-dihydroxycholecalciferol. It is a hormone which binds to and activates the vitamin D receptor in the nucleus of the cell, which then increases the expression of many genes. Calcitriol increases blood calcium (Ca2+) mainly by increasing the uptake of calcium from the intestines. It can be given as a medication for the treatment of low blood calcium and hyperparathyroidism due to kidney disease, low blood calcium due to hypoparathyroidism, osteoporosis, osteomalacia, and familial hypophosphatemia, and can be taken by mouth or by injection into a vein. Excessive amounts or intake can result in weakness, headache, nausea, constipation, urinary tract infections, and abdominal pain. Serious side effects may include high blood calcium and anaphylaxis. Regular blood tests are recommended after the medication is started and when the dose is changed. Calcitriol was identified as the active ...
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J Steroid Biochem Mol Biol
''The Journal of Steroid Biochemistry and Molecular Biology'' is a peer-reviewed scientific journal covering all aspects of steroid metabolism. It was established in 1969 as ''Journal of Steroid Biochemistry'' and obtained its current name in 1990. The editor-in-chief is Jerzy Adamski (Helmholtz Zentrum München). According to the ''Journal Citation Reports'', the journal has a 2021 impact factor The impact factor (IF) or journal impact factor (JIF) of an academic journal is a scientometric index calculated by Clarivate that reflects the yearly mean number of citations of articles published in the last two years in a given journal, as i ... of 5.011. Abstracting and indexing The journal is abstracted and indexed in: References External links * Publications established in 1969 Biochemistry journals Molecular and cellular biology journals Elsevier academic journals English-language journals {{biochem-journal-stub ...
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Cell (journal)
''Cell'' is a peer-reviewed scientific journal publishing research papers across a broad range of disciplines within the life sciences. Areas covered include molecular biology, cell biology, systems biology, stem cells, developmental biology, genetics and genomics, proteomics, cancer research, immunology, neuroscience, structural biology, microbiology, virology, physiology, biophysics, and computational biology. The journal was established in 1974 by Benjamin LewinElsevier: ''Cell'': Home
(accessed 12 December 2008)
and is published twice monthly by , an imprint of

Retinoid X Receptor
The retinoid X receptor (RXR) is a type of nuclear receptor that is activated by 9-cis retinoic acid, which is discussed controversially to be of endogenous relevance, and 9-''cis''-13,14-dihydroretinoic acid, which is likely to be the major endogenous mammalian RXR-selective agonist. In a novel review publication, this 9-''cis''-13,14-dihydroretinoic acid was shown to be a metabolite not originating from the known vitamin A (vitamin A1) pathway and its nutritional precursors all-''trans''-retinol ( vitamin A (vitamin A1) or all-''trans''- beta-carotene (provitamin A (provitamin A1)). An independent pathway for generating this endogenous RXR-ligand 9-''cis''-13,14-dihydroretinoic acid from 9-''cis''-13,14-dihydroretinol present in food source and named vitamin A5 or alternatively via provitamin A5 has been suggested as the first novel vitamin identified since 1948, cobalamin / vitamin B12. There are three retinoic X receptors (RXR): RXR-alpha, RXR-beta, and RXR-gamma, en ...
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Histone Acetyltransferase
Histone acetyltransferases (HATs) are enzymes that acetylate conserved lysine amino acids on histone proteins by transferring an acetyl group from acetyl-CoA to form ε-''N''-acetyllysine. DNA is wrapped around histones, and, by transferring an acetyl group to the histones, genes can be turned on and off. In general, histone acetylation increases gene expression. In general, histone acetylation is linked to transcriptional activation and associated with euchromatin. Euchromatin, which is less densely compact, allows transcription factors to bind more easily to regulatory sites on DNA, causing transcriptional activation. When it was first discovered, it was thought that acetylation of lysine neutralizes the positive charge normally present, thus reducing affinity between histone and (negatively charged) DNA, which renders DNA more accessible to transcription factors. Research has emerged, since, to show that lysine acetylation and other posttranslational modifications of hist ...
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