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Earl PL Americo JL Wyatt LS Eller LA Whitbeck JC Cohen GH Eisenberg RJ Hartmann CJ Jackson DL Kulesh DA Martinez MJ Miller DM Mucker EM Shamblin JD Zwiers SH Huggins JW Jahrling PB Moss B 《Nature》2004,428(6979):182-185
The potential use of smallpox as a biological weapon has led to the production and stockpiling of smallpox vaccine and the immunization of some healthcare workers. Another public health goal is the licensing of a safer vaccine that could benefit the millions of people advised not to take the current one because they or their contacts have increased susceptibility to severe vaccine side effects. As vaccines can no longer be tested for their ability to prevent smallpox, licensing will necessarily include comparative immunogenicity and protection studies in non-human primates. Here we compare the highly attenuated modified vaccinia virus Ankara (MVA) with the licensed Dryvax vaccine in a monkey model. After two doses of MVA or one dose of MVA followed by Dryvax, antibody binding and neutralizing titres and T-cell responses were equivalent or higher than those induced by Dryvax alone. After challenge with monkeypox virus, unimmunized animals developed more than 500 pustular skin lesions and became gravely ill or died, whereas vaccinated animals were healthy and asymptomatic, except for a small number of transient skin lesions in animals immunized only with MVA. 相似文献
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A biological role for prokaryotic ClC chloride channels 总被引:12,自引:0,他引:12
An unexpected finding emerging from large-scale genome analyses is that prokaryotes express ion channels belonging to molecular families long studied in neurons. Bacteria and archaea are now known to carry genes for potassium channels of the voltage-gated, inward rectifier and calcium-activated classes, ClC-type chloride channels, an ionotropic glutamate receptor and a sodium channel. For two potassium channels and a chloride channel, these homologues have provided a means to direct structure determination. And yet the purposes of these ion channels in bacteria are unknown. Strong conservation of functionally important sequences from bacteria to vertebrates, and of structure itself, suggests that prokaryotes use ion channels in roles more adaptive than providing high-quality protein to structural biologists. Here we show that Escherichia coli uses chloride channels of the widespread ClC family in the extreme acid resistance response. We propose that the channels function as an electrical shunt for an outwardly directed virtual proton pump that is linked to amino acid decarboxylation. 相似文献
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Axonal transport of neurofilaments in normal and disease states 总被引:5,自引:0,他引:5
Miller CC Ackerley S Brownlees J Grierson AJ Jacobsen NJ Thornhill P 《Cellular and molecular life sciences : CMLS》2002,59(2):323-330
Neurofilaments are among the most abundant organelles in neurones. They are synthesised in cell bodies and then transported
into and through axons by a process termed 'slow axonal transport' at a rate that is distinct from that driven by conventional
fast motors. Several recent studies have now demonstrated that this slow rate of transport is actually the consequence of
conventional fast rates of movement that are interrupted by extended pausing. At any one time, most neurofilaments are thus
stationary. Accumulations of neurofilaments are a pathological feature of several human neurodegenerative diseases suggesting
that neurofilament transport is disrupted in disease states. Here, we review recent advances in our understanding of neurofilament
transport in both normal and disease states. Increasing evidence suggests that phosphorylation of neurofilaments is a mechanism
for regulating their transport properties, possibly by promoting their detachment from the motor(s). In some neurodegenerative
diseases, signal transduction mechanisms involving neurofilament kinases and phosphatases may be perturbed leading to disruption
of transport.
Received 11 July 2001; received after revision 30 August 2001; accepted 31 August 2001 相似文献