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1.
2.
The conserved U.G pair in the 5'' splice site duplex of a group I intron is required in the first but not the second step of self-splicing. 总被引:9,自引:0,他引:9 下载免费PDF全文
Group I self-splicing introns have a 5' splice site duplex (P1) that contains a single conserved base pair (U.G). The U is the last nucleotide of the 5' exon, and the G is part of the internal guide sequence within the intron. Using site-specific mutagenesis and analysis of the rate and accuracy of splicing of the Tetrahymena thermophila group I intron, we found that both the U and the G of the U.G pair are important for the first step of self-splicing (attack of GTP at the 5' splice site). Mutation of the U to a purine activated cryptic 5' splice sites in which a U.G pair was restored; this result emphasizes the preference for a U.G at the splice site. Nevertheless, some splicing persisted at the normal site after introduction of a purine, suggesting that position within the P1 helix is another determinant of 5' splice site choice. When the U was changed to a C, the accuracy of splicing was not affected, but the Km for GTP was increased by a factor of 15 and the catalytic rate constant was decreased by a factor of 7. Substitution of U.A, U.U, G.G, or A.G for the conserved U.G decreased the rate of splicing by an even greater amount. In contrast, mutation of the conserved G enhanced the second step of splicing, as evidenced by a trans-splicing assay. Furthermore, a free 5' exon ending in A or C instead of the conserved U underwent efficient ligation. Thus, unlike the remainder of the P1 helix, which functions in both the first and second steps of self-splicing, the conserved U.G appears to be important only for the first step. 相似文献
3.
Bruce Vondracek Wayne A. Wurtsbaugh Joseph J. Cech 《Environmental Biology of Fishes》1988,21(1):45-57
The allocation of energy to growth and reproduction, in relation to temperature and food availability, was investigated in
laboratory experiments with the mosquitofish,Gambusia affinis. At constant temperature of 20, 25 and 30°C and ad libitum feeding, specific growth rates increased with increasing temperature
at 1.7, 3.1 and 3.4% dry mass day−1, respectively. Growth rates in a cycling temperature regime (20–30°C,
) were faster than in a 25°C constant temperature. As temperature increased from 20 to 30°C, mean age at first reproduction
decreased from 191 to 56 days and brood size and mass of offspring increased significantly. Interbrood interval was also temperature
dependent; estimates at 25 and 30°C for females >1000 mg were 22.6 and 18.6 days, respectively. Interbrood interval could
not be calculated at 20°C. Although fitness was highest at 30°C, females at 25°C invested a greater proportion of surplus
energy (growth and reproduction) to reproduction (38%) than at 20 (17%) or 30°C (36%) during the 32-week study. Fish at cooler
temperatures began reproduction at a smaller size.
Where rations were controlled at low, medium, and ad libitum levels, somatic and gonadal growth increased with increasing
temperatures and food availability. The proportion of energy invested in reproduction was highest at 25°C for each comparable
ration level. Calculated energy budgets indicated that over the 10-week study, 17–22% of the food energy was invested in growth,
0–7% in reproduction, and 75–83% in respiration and excretory losses, depending on feeding and temperature conditions. 相似文献
4.
Isolation and identification of a morpholine-degrading bacterium 总被引:2,自引:0,他引:2
A gram-positive, slowly growing rod effectively utilizing morpholine as the sole source of organic carbon, nitrogen, and energy was isolated from a mixed culture in a laboratory reactor. The strain was tentatively identified as Mycobacterium aurum. Its growth characteristics at 20 degrees C and pH 6.5 were as follows: maximum specific growth rate, 0.052 h-1; half-velocity constant, 1.3 mg/liter; and yield, 0.37 g/g. The optimum temperature and pH were 31 degrees C and 6.0, respectively. 相似文献
5.
A shortened form of the self-splicing intervening sequence RNA of Tetrahymena acts as a sequence-specific endoribonuclease. Specificity of cleavage is determined by Watson-Crick base pairing between the active site of the RNA enzyme (ribozyme) and its RNA substrate [Zaug, A. J., Been, M. D., & Cech, T. R. (1986) Nature (London) 324, 429-433]. Surprisingly, single-base changes in the substrate RNA 3 nucleotides preceding the cleavage site, giving a mismatched substrate-ribozyme complex, enhance the rate of cleavage. Mismatched substrates show up to a 100-fold increase in kcat and, in some cases, in kcat/Km. A mismatch introduced by changing a nucleotide in the active site of the ribozyme has a similar effect. Addition of 2.5 M urea or 3.8 M formamide or decreasing the divalent metal ion concentration from 10 to 2 mM reverses the substrate specificity, allowing the ribozyme to discriminate against the mismatched substrate. The effect of urea is to decrease kcat and kcat/Km for cleavage of the mismatched substrate; Km is not significantly affected at 0-2.5 M urea. Thus, progressive destabilization of ribozyme-substrate pairing by mismatches or by addition of a denaturant such as urea first increases the rate of cleavage to an optimum value and then decreases the rate. 相似文献
6.
Synopsis Blood samples from cannulated young adult (2.5–15 kg) white sturgeon, acclimated to San Francisco Bay water (24 ppt) had plasma
values of 248.8 ± 13.5 mOsm kg−1 H2O, [Na+] = 125 ± 8.0 mEq 1−1, [K+] = 2.6 ± 0.8 mEq 1−1 and [CL−] = 122 ± 3.0 mEq 1−1. Freshwater acclimated sturgeon had an osmolality of 236 ± 7, [Na+] = 131.6 + 4.4, [K+] = 2.5 ± 0.7 and [CL−] = 110.6 ± 3.6. Freshwater acclimated fish gradually exposed to sea water (increase of 5 ppt h−1) had higher plasma osmolalities than did the bay water acclimated fish. These young adult sturgeon are able to tolerate transfer
from fresh water to sea water as well as gradual transfer from sea water to fresh water. Plasma electrolytes in transferred
fish are regulated, but tend to differ from long term acclimated fish at the same salinities. There is a gradual increase
in the upper salinity tolerance (abrupt transfer) of juvenile white sturgeon with weight: 5–10 ppt for 0.4–0.9 g fish, 10–15
ppt for 0.7–1.8 g fish, and 15 ppt for 4.9–50.0 g fish. The ability of juveniles to regulate plasma osmolality is limited.
The young adult fish are able to tolerate higher salinities (35 ppt) than juvenile sturgeon but probably are also characterized
by low activity of the necessary ion exchange mechanisms in the gills which permit rapid adjustment of blood electrolytes
with graduate change in external salinity. 相似文献
7.
8.
Using a blood cell separator, lymphocytes were collected from otherwise healthy convalescents suffering from herpetic infections.
A specific anti-herpes dialysate (AH-DLE) was prepared from the lymphocytes, using standard procedures. Patients with recurrent
herpetic infections were treated with a single dose of the dialysate, at the initial signs of herpetic infection (group A),
with two doses (group B) or with three doses (group C). A total number of 37 patients (29 women, 8 men, age range 15–73 years)
were treated. No improvement was observed in 7 patients (18.9%), whilst 7 patients did not manifest any exacerbation of their
herpetic infection in the course of the one-year follow-up. The remaining 62.2% of the patients showed a marked improvement:
decrease of the frequency and/or duration or relapses. Before AH-DLE administration, the mean number of herpes relapses in
this group of patients was 12 p.a.. After therapy, the number of relapses decreased to 3.5 p.a.. No statistically significant
difference was observed between groups A and B. The least favourable results were registered in group C. However, this group
included 6 female patients extremely resistant to the previously therapeutic attempts, including inosiplex, non-specific DLE
or acyclovir. Thus, even in this group, the therapy was successful in 50% of the patients. 相似文献
9.
Self-assembly of a group I intron active site from its component tertiary structural domains. 总被引:7,自引:1,他引:6 下载免费PDF全文
The catalytic core of Group I self-splicing introns has been proposed to consist of two structural domains, P4-P6 and P3-P9. Each contains helical segments and conserved unpaired nucleotides, and the isolated P4-P6 domain has been shown to have substantial native tertiary structure. The proposed tertiary structure domains of the Tetrahymena intron were synthesized separately and shown to self-assemble into a catalytically active complex. Surprisingly, the concentration dependence of these reactions revealed that the domains interact with nanomolar apparent dissociation constants, even though there is no known base pairing between P4-P6 and P3-P9. This suggests that the domains interact through multiple tertiary contacts, the nature of which can now be explored in this system. For example, a circularly permuted version of the P4-P6 domain, which folds similarly to the native P4-P6 molecule, formed a stable but inactive complex. Interestingly, activity was demonstrated with the permuted molecule when nucleotides proposed to form a triple-strand interaction with P4 and P6 were restored as part of the P1-P3 substrate or as part of the P3-P9 RNA. Thus, beyond stabilization of the P4-P6 domain, the triple-strand region may facilitate correct orientation of the RNA domains or participate more directly in catalysis. 相似文献
10.
Synthesis and properties of oligodeoxyribonucleotide-polyethylene glycol conjugates. 总被引:2,自引:1,他引:1 下载免费PDF全文
A Jschke J P Fürste E Nordhoff F Hillenkamp D Cech V A Erdmann 《Nucleic acids research》1994,22(22):4810-4817
Pools of oligonucleotide conjugates consisting of 10-400 different molecular species were synthesized. The conjugates contained a varying number of ethylene glycol units attached to 3'-terminal, 5'-terminal and internal positions of the oligonucleotides. Conjugate synthesis was performed by phosphoramidite solid phase chemistry using suitably protected polyethylene glycol phosphoramidites and PEG-derivatized solid supports containing polydisperse PEGs of various molecular weight ranges. The pools were analyzed and fractionated by chromatographic and electrophoretic techniques, and the composition of isolated conjugates was revealed by matrix-assisted laser desorption/ionization mass spectrometry. The number and attachment sites of coupled ethylene glycol units greatly influence the hydrophobicity of the conjugates, as well as their electrophoretic mobilities. Conjugation had little effect on the hybridization behavior of oligonucleotide conjugates with unmodified complementary oligonucleotide strands. Melting temperatures were between 67 and 73 degrees C, depending on the size and number of coupled PEG chains, compared to 68 degrees C for the unmodified duplex. Conjugates with PEG coupled to both 3'- and 5'-terminal positions showed a more than 10-fold increase in exonuclease stability. 相似文献