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sterol/horečka

Odkaz je uložen do schránky
Strana 1 z 63 Výsledek

Utilization and metabolism of dietary sterols in the honey bee and the yellow fever mosquito.

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Přihlášení Registrace
The honey bee, Apis mellifera, does not convert C28 and C29 phytosterols to cholesterol as found in most previous studies of phytophagous or omnivorous insects, but instead the workers and queens selectively transfer 24-methylenecholesterol, sitosterol and isofucosterol from their endogenous sterol

Expression of a sterol carrier protein-x gene in the yellow fever mosquito, Aedes aegypti.

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Přihlášení Registrace
The sterol carrier protein-x (SCP-x), a peroxisomal thiolase/nonspecific lipid binding protein, was characterized in the yellow fever mosquito, Aedes aegypti. The Aedes aegypti SCP-x (AeSCP-x) has 83% and 75% similarities to Drosophila and mammalian SCP-x, respectively. However, the AeSCP-x gene did

Identification of two sterol carrier protein-2 like genes in the yellow fever mosquito, Aedes aegypti.

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Přihlášení Registrace
Two genes encoding sterol carrier protein-2 like proteins are identified from fourth instar cDNAs of the yellow fever mosquito, Aedes aegypti. The predicted AeSCP-2like1 (AeSCP-2L1) and AeSCP-2like2 (AeSCP-2L2) proteins are small, acidic and lacking the peroxisomal targeting sequence at the

Characterization of the yellow fever mosquito sterol carrier protein-2 like 3 gene and ligand-bound protein structure.

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Přihlášení Registrace
The sterol carrier protein-2 like 3 gene (AeSCP-2L3), a new member of the SCP-2 protein family, is identified from the yellow fever mosquito, Aedes aegypti. The predicted molecular weight of AeSCP-2L3 is 13.4 kDa with a calculated pI of 4.98. AeSCP-2L3 transcription occurs in the larval feeding

THAP and ATF-2 regulated sterol carrier protein-2 promoter activities in the larval midgut of the yellow fever mosquito, Aedes aegypti.

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Přihlášení Registrace
Expression of sterol carrier protein-2 (SCP-2) in Aedes aegypti shows a distinct temporal/spatial pattern throughout the life cycle. In order to identify the transcription factors responsible for the larval temporal/spatial regulation of AeSCP-2 transcription, AeSCP-2 promoter activities were

Yellow fever mosquito sterol carrier protein-2 gene structure and transcriptional regulation.

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Přihlášení Registrace
AeSCP-2, a sterol carrier protein, is involved in sterol trafficking in mosquitoes. The activity of the AeSCP-2 gene is important for mosquito development. An earlier study demonstrated that the transcription of this gene was upregulated by 20-hydroxyecdysone (20E) in cultured gut tissues. To

Isolation and expression of a sterol carrier protein-2 gene from the yellow fever mosquito, Aedes aegypti.

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Přihlášení Registrace
Trafficking of cholesterol in insects is a very important process due to the fact that insects depend on dietary cholesterol to fulfil their physiological needs. We identified a putative mosquito sterol carrier protein-2 (SCP-2) cDNA from fourth instar subtracted cDNA library. The AeSCP-2 protein

In vivo functional genomic studies of sterol carrier protein-2 gene in the yellow fever mosquito.

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Přihlášení Registrace
A simple and efficient DNA delivery method to introduce extrachromosomal DNA into mosquito embryos would significantly aid functional genomic studies. The conventional method for delivery of DNA into insects is to inject the DNA directly into the embryos. Taking advantage of the unique aspects of

Lipid Exchange Factors at Membrane Contact Sites in African Swine Fever Virus Infection.

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Přihlášení Registrace
African swine fever (ASF) is a hemorrhagic fever of wild and domestic pigs with a high rate of mortality. Originally endemic in Africa, this disease is currently disseminating in Europe and China, causing a large socioeconomic impact. ASF is caused by a DNA virus, African swine fever virus (ASFV).

Functional analysis of AeSCP-2 using gene expression knockdown in the yellow fever mosquito, Aedes aegypti.

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Přihlášení Registrace
The effect of gene expression knockdown was used to study the function of the sterol carrier protein-2 (AeSCP-2) in the yellow fever mosquito, Aedes aegypti. Injection of small double stranded AeSCP-2 RNAs into mosquito larvae resulted in the knockdown of gene products. The lack of AeSCP-2 in larvae

Low plasma vitamin D levels in patients with familial Mediterranean fever.

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Přihlášení Registrace
Familial Mediterranean fever (FMF) is an autosomal recessive, inherited autoinflammatory disease characterized by recurrent, self-limited attacks of fever and inflammation of serosal surfaces. There is an explosion of the data regarding inflammatory markers in FMF and clinical effects of chronic

Antipyretic activity of decoction of Joshanda and its saponin and sterol contents: validation in an animal-based model.

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Přihlášení Registrace
Joshanda is a polyherbal product that is commonly used in the treatment of cold and flu usually accompanied by fever. The present study was designed to scrutinize the antipyretic activity of a decoction of Joshanda and its total saponin and sterol contents in brewer's yeast induced febrile mice. The

Coxiella burnetii expresses a functional Δ24 sterol reductase.

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Přihlášení Registrace
Coxiella burnetii, the etiological agent of human Q fever, occupies a unique niche inside the host cell, where it replicates in a modified acidic phagolysosome or parasitophorous vacuole (PV). The PV membrane is cholesterol-rich, and inhibition of host cholesterol metabolism negatively impacts PV

Sterol metabolism disorders and neurodevelopment-an update.

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Přihlášení Registrace
Cholesterol has numerous quintessential functions in normal cell physiology, as well as in embryonic and postnatal development. It is a major component of cell membranes and myelin, and is a precursor of steroid hormones and bile acids. The development of the blood brain barrier likely around 12-18

Effects of mutations in Aedes aegypti sterol carrier protein-2 on the biological function of the protein.

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Přihlášení Registrace
Sterol carrier protein-2 (SCP-2) is a nonspecific intracellular lipid carrier protein. However, the molecular mechanism of ligand selectivity and the in vivo function of SCP-2 remain unclear. In this study, we used site-directed mutagenesis to investigate the ligand selectivity and in vivo function
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