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11.
12.
RNA recombination of murine coronaviruses: recombination between fusion-positive mouse hepatitis virus A59 and fusion-negative mouse hepatitis virus 2. 总被引:9,自引:8,他引:1 下载免费PDF全文
It has previously been shown that the murine coronavirus mouse hepatitis virus (MHV) undergoes RNA recombination at a relatively high frequency in both tissue culture and infected animals. Thus far, all of the recombination sites had been localized at the 5' half of the RNA genome. We have now performed a cross between MHV-2, a fusion-negative murine coronavirus, and a temperature-sensitive mutant of the A59 strain of MHV, which is fusion positive at the permissive temperature. By selecting fusion-positive viruses at the nonpermissive temperature, we isolated several recombinants containing multiple crossovers in a single genome. Some of the recombinants became fusion negative during the plaque purification. The fusion ability of the recombinants parallels the presence or absence of the A59 genomic sequences encoding peplomers. Several of the recombinants have crossovers within 3' end genes which encode viral structural proteins, N and E1. These recombination sites were not specifically selected with the selection markers used. This finding, together with results of previous recombination studies, indicates that RNA recombination can occur almost anywhere from the 5' end to the 3' end along the entire genome. The data also show that the replacement of A59 genetic sequences at the 5' end of gene C, which encodes the peplomer protein, with the fusion-negative MHV-2 sequences do not affect the fusion ability of the recombinant viruses. Thus, the crucial determinant for the fusion-inducing capability appears to reside in the more carboxyl portion of the peplomer protein. 相似文献
13.
T Morii M Shimomura I Saito H Ide A Murakami K Makino 《Nucleic acids symposium series》1992,(27):177-178
A chiral template with C2 symmetry has been used for modeling a dimeric interface of DNA binding protein. An oligopeptide derived from the basic region of MyoD, a recently described "helix-loop-helix" class of DNA binding protein, has been tethered to the template. Among the four models which differ in chirality and polarity with respect to the arrangement of two subunits, only one dimer model with right-handed and C-terminus to C-terminus arrangement of the peptide subunits binds DNA containing native MyoD binding sequence. 相似文献
14.
Masahiko Makino Wendy F. Davidson Torgny N. Fredrickson Janet W. Hartley Herbert C. Morse III 《Immunogenetics》1991,33(5-6):345-351
Mice of certain strains are highly sensitive to development of a severe immunodeficiency disease following inoculation as adults with LP-BM5 murine leukemia viruses (MuLV) whereas others are extremely resistant. These strain-dependent differences in response to infection have been shown to be genetically determined with resistance to disease being, in general, associated with homozygosity for Fv-1
nand H-2 haplotypes a and d and sensitivity with homozygosity for Fv-1
band other H-2 haplotypes including b, s, and q. The Fv-1
b, H-2
rstrain RIIIS/J (RIIIS) was found to be highly resistant to disease even though B10.RIII(71NS)/J (B10.RIII), also H-2
r, was very sensitive, thus excluding a role for H-2 in the resistance of RIIIS. The characteristics of RIIIS resistance were evaluated in studies of infected (B10.RIII×RIIIS) F1, F2 and reciprocal backcross mice. Resistance to disease was shown to be semidominant and determined by more than one gene, although a preponderant influence of a single gene was suggested. Studies of segregating populations showed that resistance was not associated with or linked to polymorphisms of the V
\complex or genes in proximity to the Emv-2 locus on chromosome 8. However, there was almost complete concordance between absence of disease in infected mice and inhibition of ecotropic virus spread. These results demonstrate that genes other than Fv-1 or H-2 can profoundly influence the development of retrovirus-induced immunodeficiency and replication of ecotropic viruses.Abbreviations MuLV
murine leukemia virus
- MCF
mink cell focus-inducing MuLV
- B6
C57BL/6
- BM5d
the defective virus in LP-BM5 MuLV
- MAIDS
murine acquired immunodeficiency syndrome
- RIIIS
RIIIS/J
- B10.RIII
B10.RIII (71NS)/J
- MLR
mixed lymphocyte reaction
- FACS
fluorescence activated cell sorter 相似文献
15.
Intraspecific nest usurpation by foundresses was studied in 2 haplometrotic (solitary founding) species of different subgenera,Polistes (P.) riparius andP. (Polistella) snelleni, in areas where they cohabited. The overall probability for a nest to be usurped by a foreign foundress during the season
was about twice as large inP. snelleni as inP. riparius. In both, however, probability of usurpation was largest on late pre-emergence nests, or in late June and early July. InP. riparius, all the usurpers of known origins were those foundresses that had lost their pre-emergence nests to destruction probably
by some vertebrates; inP. snelleni, some usurpers had the same history as above, while the others had lost many of all larvae to predation by unknown agents
before worker emergence. Usurpers of both species destroyed eggs and younger larvae to much greater extents than older larvae
or pupae, and they produced fewer numbers of reproductives in comparison with non-usurping foundresses. We concluded that
usurpation behavior has been maintained despite its relatively low productivity because renesting would lead to even lower
or no reproductive production. 相似文献
16.
Properties of the Escherichia coli RuvA and RuvB proteins involved in DNA repair, recombination and mutagenesis 总被引:4,自引:0,他引:4
The ruvA and ruvB genes constitute an operon, which is regulated by the SOS system and involved in DNA repair, recombination and mutagenesis. RuvA protein binds to both single-stranded and double-stranded DNA. RuvB protein has weak ATPase activity. RuvA bound to DNA greatly enhances ATPase activity of RuvB. UV-irradiation to supercoiled DNA further enhances the stimulatory effect of RuvA on the RuvB ATPase activity. In the presence of ATP the RuvA-RuvB complex has an activity that renatures cruciform structures formed by heating and gradually cooling supercoiled DNA with an inverted repeat. These findings suggest that the RuvA-RuvB complex interacts with an irregular conformation in damaged DNA and induces conformational changes in DNA using energy provided by ATP hydrolysis, so that it facilitates DNA repair, recombination and error prone replication. 相似文献
17.
M Sekiguchi K Watanabe M Eto Y Iwashima A Morikawa M Takahashi K Ishii I Makino 《Comparative biochemistry and physiology. B, Comparative biochemistry》1991,98(4):637-640
1. Sorbitol and fructose levels were significantly elevated in the lens, the sciatic nerve, the retina and the kidney of diabetic Chinese hamsters and inositol level was significantly decreased in the lens and sciatic nerve of diabetics. 2. The activity of an aldose reductase in the kidney was not different between normal and diabetic Chinese hamsters. 3. An aldose reductase inhibitor (ONO-2235) had no effect in sorbitol, fructose and inositol contents of all these tissues from diabetic Chinese hamsters. 4. These results suggest that diabetic Chinese hamsters produce polyol accumulation in tissues but that there is a clear species-specific difference to inhibition of aldose reductase. 相似文献
18.
Structure and regulation of the Escherichia coli ruv operon involved in DNA repair and recombination. 总被引:23,自引:7,他引:16 下载免费PDF全文
H Shinagawa K Makino M Amemura S Kimura H Iwasaki A Nakata 《Journal of bacteriology》1988,170(9):4322-4329
19.
Suppression of overt diabetes in NOD mice by anti-thymocyte serum or anti-Thy 1, 2 antibody 总被引:7,自引:0,他引:7
Effects of anti-thymocyte serum (ATS) and anti-Thy 1, 2 monoclonal antibody on the spontaneously occurring diabetes in NOD mice were examined. Spontaneous diabetes in female mice was markedly suppressed by intravenous injection of rabbit anti-mouse thymocyte serum diluted to 1:4 on three consecutive days during the time period from 70 to 100 days after birth; the cumulative incidence of overt diabetes upto 195 days of age was greatly reduced and the onset of diabetes was delayed. Similar effect was observed with anti-Thy 1, 2 antibody treatment. These findings suggest that T lymphocytes play a role in the production of spontaneous diabetes in this mouse strain. 相似文献
20.
Coordination structures and reactivities of compound II in iron and manganese horseradish peroxidases. A resonance Raman study 总被引:1,自引:0,他引:1
R Makino T Uno Y Nishimura T Iizuka M Tsuboi Y Ishimura 《The Journal of biological chemistry》1986,261(18):8376-8382
Resonance Raman investigations on compound II of native, diacetyldeuteroheme-, and manganese-substituted horseradish peroxidase (isozyme C) revealed that the metal-oxygen linkage in the compound differed from one another in its bond strength and/or structure. Fe(IV) = O stretching frequency for compound II of native enzyme was pH sensitive, giving the Raman line at 772 and 789 cm-1 at pH 7 and 10, respectively. The results confirmed the presence of a hydrogen bond between the oxo-ligand and a nearby amino acid residue (Sitter, A. J., Reczek, C. M., and Terner, J. (1985) J. Biol. Chem. 260, 7515-7522). The Fe(IV) = O stretch for compound II of diacetylheme-enzyme was located at 781 cm-1 at pH 7 which was 9 cm-1 higher than that of native enzyme compound II. At pH 10, however, the Fe(IV) = O stretch was found at 790 cm-1, essentially the same frequency as that of native enzyme compound II. The pK value for the pH transition, 8.5, was also the same as that of native compound II. Unlike in native enzyme, D2O-H2O exchange did not cause a shift of the Fe(IV) = O frequency of diacetylheme-enzyme. Thus, the metal-oxygen bond at pH 7 was stronger in diacetylheme-enzyme due to a weaker hydrogen bonding to the oxo-ligand, while the Fe(IV) = O bond strength became essentially the same between both enzymes at alkaline pH upon disruption of the hydrogen bond. A much lower reactivity of the diacetylheme-enzyme compound II was accounted to be due to the weaker hydrogen bond. Compound II of manganese-substituted enzyme exhibited Mn(IV)-oxygen stretch about 630 cm-1, which was pH insensitive but down-shifted by 18 cm-1 upon the D2O-H2O exchange. The finding indicates that its structure is in Mn(IV)-OH, where the proton is exchangeable with a water proton. These results establish that the structure of native enzyme compound II is Fe(IV) = O but not Fe(IV)-OH. 相似文献