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1 us pathway, G4, which is almost identical in smallpox virus.
2 inC1, and A39R is a Sema7A mimic secreted by smallpox virus.
3 n protective immunity against infection with smallpox virus.
4  potential candidates for antivirals against smallpox virus.
5  most effective defence measure against wild smallpox virus.
6  Ind.) PCR assay for laboratory detection of smallpox virus.
7  proteins, of which 103 have homologs in the smallpox virus.
8 he threat posed by deliberate release of the smallpox virus and the best means of containing an outbr
9    Orthopoxviruses (OPVs), such as the human smallpox virus and the mouse-equivalent ectromelia virus
10 out their knowledge of and beliefs about the smallpox virus and the vaccine, their possible reactions
11                  The potential threat of the smallpox virus as a bioterror weapon has long been recog
12 who may be at risk from the potential use of smallpox virus as a bioterrorism agent.
13                           With the threat of smallpox virus as a bioterrorism weapon, questions have
14 ue to the concern about the potential use of smallpox virus as a bioweapon, smallpox vaccination is c
15                                          The smallpox virus codes for its own topoisomerase enzyme th
16 poxvirus proteins, the vaccinia and variola (smallpox) virus complement control proteins, which diffe
17 ved from infected cell cultures and tissues, smallpox virus DNA could be detected in a background of
18 nd specific assay for the rapid detection of smallpox virus DNA on both the Smart Cycler and LightCyc
19 ce, Mannheim, Germany) PCR identification of smallpox virus DNA was developed and compiled in a kit s
20  were designed specifically for detection of smallpox virus DNA, but all viruses of the genus Orthopo
21  inactivation data were available, including smallpox virus, Ebola, Marburg, Crimean-Congo, Junin, an
22            Poxviruses including vaccinia and smallpox viruses express PKR inhibitors such as the vacc
23 robe that allows reliable differentiation of smallpox virus from other orthopoxviruses by melting-cur
24 segment of approximately 30,000 bases of the smallpox virus genome.
25 tures of human RCA (MCP, DAF, and CR1) and a smallpox virus homolog (SPICE) bound to complement compo
26 n alternate tool for rapid identification of smallpox virus in the future.
27    MCV lacks counterparts to 83 genes of the smallpox virus, including those important in suppression
28 say may be useful for the early detection of smallpox virus infections should such infections occur a
29            The possibility of the release of smallpox virus into a predominantly nonimmunized populat
30                  The K7L gene product of the smallpox virus is a protease implicated in the maturatio
31 icella-zoster virus were not detected by the smallpox virus LightCycler PCR.
32 tes of the Russian World Health Organization smallpox virus repository was determined and compared to
33  the complete genome and hybridized with the smallpox virus resequencing GeneChip set.
34 ation was fast and reproducible and that the smallpox virus resequencing GeneChips could differentiat
35 ce information included in the design of the smallpox virus resequencing GeneChips; similar informati
36                               As most of the smallpox virus samples were derived from infected cell c
37 uencing GeneChips could differentiate the 14 smallpox virus strains characterized.
38                                    Of the 14 smallpox virus strains hybridized, only 7 had sequence i
39 ating nucleotide sequences for all 14 of the smallpox virus strains hybridized.
40 udy includes the hybridization results of 14 smallpox virus strains.
41 ted sdAb specific for live vaccinia virus (a smallpox virus surrogate), hen egg lysozyme, cholera tox
42 ), including the Dryvax vaccine strain, from smallpox virus (T(m), 62.45 degrees C) by melting curve
43 sensitivity was determined to be 4 copies of smallpox virus target DNA per sample.
44     In search of a sequence region unique to smallpox virus, the nucleotide sequence of the 14-kDa fu
45     Recently we determined structures of the smallpox virus topoisomerase bound to DNA in covalent an
46    Here we present crystal structures of the smallpox virus topoisomerase enzyme bound both covalentl
47 cinia virus (VV) that is conserved in J8R of smallpox virus variola major.
48 e complete genome sequences of 24 strains of smallpox virus (variola virus), for rapid characterizati
49                                              Smallpox virus (variola) poses a significant threat as a
50                                 Although the smallpox virus was eradicated over 20 years ago, its pot
51 lting in a unique amino acid substitution in smallpox virus was used to design a hybridization probe

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