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Isolation of an antifreeze peptide from the Antarctic sponge <Emphasis Type="Italic">Homaxinella balfourensis</Emphasis> 总被引:1,自引:0,他引:1
Wilkins SP Blum AJ Burkepile DE Rutland TJ Wierzbicki A Kelly M Hamann MT 《Cellular and molecular life sciences : CMLS》2002,59(12):2210-2215
Polar plants and animals survive in subzero waters (-2 degrees C) and many of these marine organisms produce antifreeze proteins (AFPs) to better adapt themselves to these conditions. AFPs prevent the growth of ice crystals which disrupt cellular membranes and destroy cells by inhibiting crystallization of water within the organism. The hydrophilic extract of an Antarctic sponge Homaxinella balfourensis exhibited a non-colligative freezing point depression effect on the crystal morphology of water. The extract was purified by repeated reverse phase high-pressure liquid chromatography, then assayed and shown to contain several AFPs. The major peptide was isolated, analyzed using matrix-assisted laser desorption ionization mass spectrometry and the partial structure of the peptide identified through amino acid sequencing. AFPs have potential applications in agriculture, medicine and the food industry. 相似文献
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Bond J Roberts E Springell K Lizarraga SB Lizarraga S Scott S Higgins J Hampshire DJ Morrison EE Leal GF Silva EO Costa SM Baralle D Raponi M Karbani G Rashid Y Jafri H Bennett C Corry P Walsh CA Woods CG 《Nature genetics》2005,37(4):353-355
Autosomal recessive primary microcephaly is a potential model in which to research genes involved in human brain growth. We show that two forms of the disorder result from homozygous mutations in the genes CDK5RAP2 and CENPJ. We found neuroepithelial expression of the genes during prenatal neurogenesis and protein localization to the spindle poles of mitotic cells, suggesting that a centrosomal mechanism controls neuron number in the developing mammalian brain. 相似文献
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Functional analysis of secreted and transmembrane proteins critical to mouse development. 总被引:20,自引:0,他引:20
K J Mitchell K I Pinson O G Kelly J Brennan J Zupicich P Scherz P A Leighton L V Goodrich X Lu B J Avery P Tate K Dill E Pangilinan P Wakenight M Tessier-Lavigne W C Skarnes 《Nature genetics》2001,28(3):241-249
We describe the successful application of a modified gene-trap approach, the secretory trap, to systematically analyze the functions in vivo of large numbers of genes encoding secreted and membrane proteins. Secretory-trap insertions in embryonic stem cells can be transmitted to the germ line of mice with high efficiency and effectively mutate the target gene. Of 60 insertions analyzed in mice, one-third cause recessive lethal phenotypes affecting various stages of embryonic and postnatal development. Thus, secretory-trap mutagenesis can be used for a genome-wide functional analysis of cell signaling pathways that are critical for normal mammalian development and physiology. 相似文献
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Bacterial flagella contain a specialized secretion apparatus that functions to deliver the protein subunits that form the filament and other structures to outside the membrane. This apparatus is related to the injectisome used by many gram-negative pathogens and symbionts to transfer effector proteins into host cells; in both systems this export mechanism is termed 'type III' secretion. The flagellar secretion apparatus comprises a membrane-embedded complex of about five proteins, and soluble factors, which include export-dedicated chaperones and an ATPase, FliI, that was thought to provide the energy for export. Here we show that flagellar secretion in Salmonella enterica requires the proton motive force (PMF) and does not require ATP hydrolysis by FliI. The export of several flagellar export substrates was prevented by treatment with the protonophore CCCP, with no accompanying decrease in cellular ATP levels. Weak swarming motility and rare flagella were observed in a mutant deleted for FliI and for the non-flagellar type-III secretion ATPases InvJ and SsaN. These findings show that the flagellar secretion apparatus functions as a proton-driven protein exporter and that ATP hydrolysis is not essential for type III secretion. 相似文献