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321.
Vitamin E and neurologic function in man 总被引:1,自引:0,他引:1
R J Sokol 《Free radical biology & medicine》1989,6(2):189-207
Despite the well-known detrimental effect of vitamin E deficiency on the nervous system of many experimental animal models for decades, only over the past decade has vitamin E become recognized as essential for the maintenance of the structure and function of the human nervous system. This discovery of the neurologic role of vitamin E in man is due primarily to the identification of a degenerative neurologic syndrome in children and adults with chronic vitamin E deficiency caused by gastrointestinal diseases impairing fat and vitamin E absorption. A compelling body of clinical, neuropathologic, and therapeutic response evidence conclusively demonstrates that vitamin E deficiency is responsible for the neurologic disorder seen in such patients. In addition, an inborn error in vitamin E metabolism, the Isolated Vitamin E Deficiency Syndrome, causes vitamin E deficiency and similar neurologic degeneration in the absence of fat malabsorption. Guidelines for the evaluation and treatment of vitamin E deficiency in relevant clinical circumstances are provided. The possible role of vitamin E in treating other neurologic diseases is discussed. 相似文献
322.
Dominic SY Amuzu Kirk A Rockett Ellen M Leffler Felix Ansah Nicholas Amoako Collins M Moranga Christina Hubbart Kate Rowlands Anna E Jeffreys Lucas N Amenga-Etego Dominic P Kwiatkowski Gordon A Awandare 《Experimental biology and medicine (Maywood, N.J.)》2021,246(8):916
Glycophorins are the most abundant sialoglycoproteins on the surface of human erythrocyte membranes. Genetic variation in glycophorin region of human chromosome 4 (containing GYPA, GYPB, and GYPE genes) is of interest because the gene products serve as receptors for pathogens of major public health interest, including Plasmodium sp., Babesia sp., Influenza virus, Vibrio cholerae El Tor Hemolysin, and Escherichia coli. A large structural rearrangement and hybrid glycophorin variant, known as Dantu, which was identified in East African populations, has been linked with a 40% reduction in risk for severe malaria. Apart from Dantu, other large structural variants exist, with the most common being deletion of the whole GYPB gene and its surrounding region, resulting in multiple different deletion forms. In West Africa particularly, these deletions are estimated to account for between 5 and 15% of the variation in different populations, mostly attributed to the forms known as DEL1 and DEL2. Due to the lack of specific variant assays, little is known of the distribution of these variants. Here, we report a modification of a previous GYPB DEL1 assay and the development of a novel GYPB DEL2 assay as high-throughput PCR-RFLP assays, as well as the identification of the crossover/breakpoint for GYPB DEL2. Using 393 samples from three study sites in Ghana as well as samples from HapMap and 1000 G projects for validation, we show that our assays are sensitive and reliable for genotyping GYPB DEL1 and DEL2. To the best of our knowledge, this is the first report of such high-throughput genotyping assays by PCR-RFLP for identifying specific GYPB deletion types in populations. These assays will enable better identification of GYPB deletions for large genetic association studies and functional experiments to understand the role of this gene cluster region in susceptibility to malaria and other diseases. 相似文献
323.
Richard R. Sprenger Martin Hermansson Ditte Neess Lena Sokol Becciolini Signe Bek Sørensen Rolf Fagerberg Josef Ecker Gerhard Liebisch Ole N. Jensen Dennis E. Vance Nils J. Færgeman Robin W. Klemm Christer S. Ejsing 《Cell reports》2021,34(5):108710
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324.
I F Mishunin S V Sokol E N Gubchenko G S Kolosova Iu V Kostenko 《Ukrainski? biokhimicheski? zhurnal》1988,60(4):78-81
Proteolytic enzymes of microorganisms have been studied for the possibility to create their polyenzymic composition in order to rise a degree of protein hydrolysis and to lower the process duration. Optimal action conditions are selected and a hydrolysis of a number of globular and fibrillar proteins is conducted by a polyenzymic system of Streptomyces griseus and Acremonium chrysogenum proteases. 相似文献