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Biomedical subjects

K Taira

Publications and source records attributed to K Taira.

At least 19 recordsLinked to original sources

RNA hydrolysis via an oxyphosphorane intermediate.

From calculations of a model reaction scheme for base-catalyzed RNA hydrolysis, a pentacoodinate dianionic intermediate 2a (Storer, et al., J. Am. Chem. Soc., 1991, 113, 5216-5219) as well as two transition states, TS1 and TS2, to the intermediate have been located by ab initio calculations at the 3-21G* level. Although the intermediate, which has the well depth on the order of kBT, is unlikely to be kinetically significant, the overall rate-limiting transition state structure TS2 obtained at 3-21G* level is very close to the corresponding structure at the STO-3G level; it has an extended P-O(5') bond breaking character. These gas-phase calculation results are used to qualitatively interpret mutagenesis results of Barnase and RNase T1 where water molecules are absent from the active site.

Bacterial Proteins

Construction of a tRNA-embedded-ribozyme trimming plasmid.

We have combined Cotten and Birnstiel's tRNA-embedded ribozymes and our 5'- and 3'-trimming system. Although the activity of the tRNA-embedded ribozyme was ca. 30% lower than those of naked ribozymes, since the stability of the former in bovine serum was higher than those of naked ribozymes, the tRNA-embedded ribozymes appear useful especially when the 5'- and 3'-trimming units are concatenated in tandem.

Base Sequence

Random mutations to evaluate the role of bases at two important single-stranded regions of genomic HDV ribozyme.

In elucidating function of two important single-stranded regions [SSrA (726-731 nt) and SSrB (762-766 nt)] derived mainly from three secondary structure models in genomic hepatitis delta virus (HDV) ribozyme possessing self-cleavage activity, we have constructed several random mutants at those two regions on the HDV88 molecule (683-770 nt) by oligonucleotide-directed mutagenesis. When self-cleavage activities were compared among mutants, at the region SSrA, G726 was found to play an important role during cleavage reaction since substitutions of the base to A (mutant A20) or C (mutant A16) or U (mutant A23), reduced the ribozyme activity to very low levels suggesting the importance of G726 position. C763 at SSrB region was found to play a more significant role during catalysis than G726 (at region SSrA) since any substitutions at C763 completely inactivated the ribozyme. Other bases located in these two regions could be substituted to other bases at the expense of some self-cleavage activity. The results presented here together with our previous deletion analysis indicate that these two regions may play an important role during cleavage process.

Base Sequence

Analysis of bph operon from the polychlorinated biphenyl-degrading strain of Pseudomonas pseudoalcaligenes KF707.

The entire nucleotide sequences (6.8 kilobase pairs) of the bphABC genes and their products involved in the initial dioxygenation and ring-meta-cleavage of biphenyls and polychlorinated biphenyls were determined. The first bphA gene starts about a 100 base pairs downstream from the transcriptional initiation site. The bphA region, which encodes a cluster of enzymes including biphenyl dioxygenase catalyzing the initial catabolic step, consists of five open reading frames (ORFs). Five proteins corresponding to these ORFs in the molecular masses were detected by in vitro protein synthesis, of which four ORFs are very similar to the recently reported todC1C2BA genes coding for the corresponding enzymes catalyzing the initial dioxygenation reactions of toluene (Zylstra, G.J., and Gibson, D. T. (1989) J. Biol. Chem. 264, 14940-14946). The third open reading frame (ORF3) of the bphA region, missing its counterpart in the toluene dioxygenase gene cluster, was site-specifically deleted, and the resulting enzymatically active mutant reveals that this ORF3 is not mandatory for the catabolism of biphenyls. Thus the biphenyl degradation pathway and the responsible enzymes/genes are very similar to those of toluene degradation despite their discrete substrate specificity.

Amino Acid Sequence

Deletion of internal sequence on the HDV-ribozyme: elucidation of functionally important single-stranded loop regions.

In elucidating functionally important single-stranded loop regions derived mainly from three models in genomic hepatitis delta virus (HDV) ribozyme possessing self-cleavage activity, we have constructed several internal deletion variants of the HDV133 molecule (654-786 nt on genomic RNA) by oligonucleotide-directed mutagenesis. When self-cleavage activities were compared among variants, the HDV133DI-1 (deletion of 701-718 nt) and HDV133DI-3 (deletion of 740-752 nt) ribozyme could maintain their self-cleavage activity, despite at reduced level. However, the activity could be regained in both mutants by some extent under partially denaturing conditions. These results suggest that the above two single-stranded RNA loop regions in HDV ribozyme are not part of the catalytic core but might be involved in the stability of the molecule. In contrast, deletion mutants such as HDV133DI-2 (deletion of 696-722 nt), HDV88DI-1 (deletion of 701-718 nt), HDV88DI-2 (deletion of 696-722 nt), and HDV88DI-4 (deletion of 733-760 nt) abolished catalytic activity. These results suggest that the remaining single-stranded regions of bases between 726-731 and 762-766 in the HDV88 ribozyme may be the potential regions to interact with Mg2+ ions.

Base Composition

Activities of HIV-RNA targeted ribozymes transcribed from a 'shot-gun' type ribozyme-trimming plasmid.

We have constructed a "shot-gun" type ribozyme-trimming system. By concatenating several units, each consisting of a trans-acting ribozyme (targeted to HIV-RNA) and cis-acting ribozymes (trimming 5'- and 3'-ends of the trans-acting ribozyme), several kinds of trans-acting ribozymes can be liberated upon transcription and self-cleavage. Since each liberated HIV-RNA-targeted ribozymes can work independently, they can simultaneously cleave HIV-RNA at several different sites. Ribozymes were targeted at relatively conserved GUC-containing sites at LTR, gag and tat regions.

Base Sequence

Identification of important bases for the self-cleavage activity at two single-stranded regions of genomic HDV ribozyme.

In order to determine important bases at two single-stranded regions [SSrA (726-731 nt) and SSrB (762-766)] derived mainly from secondary structure models in genomic hepatitis delta virus (HDV) ribozyme possessing self-cleavage activity, we have constructed several point mutants at these two regions on the HDV88 molecule (683-770). Among the bases at SSrA and SSrB regions C763 was found to play an essential role during self-cleavage process since substitutions to any other bases viz. A or G or U completely abolished the activity.

Base Sequence

Pentacoordinate oxyphosphorane intermediate always exists in aqueous solution.

Gas-phase ab initio calculations indicate that dianionic pentacoordinate oxyphosphoranes do not have a kinetically meaningful intermediate. The simplest oxyphosphorane PO5H3(2-) has the least tendency to have a pentacoordinate intermediate. However, it does have a pentacoordinate intermediate when it is solvated with six water molecules. These results support the hypothesis that the phosphoryl transfer reactions take place via pentacoordinate intermediate not only in acidic but also in basic media.

Kinetics

Urinary platelet factor four (Pf4) levels in mesangial IgA glomerulonephritis and thin basement membrane disease.

The aim of this study was to assess the significance of platelet factor four (Pf4) excretion in the urine of patients with mesangial IgA glomerulonephritis (IgAGN) and thin basement membrane disease (TBMD), and ascertain if Pf4 is a useful parameter to distinguish these diseases. The concentration of Pf4 in urine (Pf4) was determined by an enzyme linked immunoabsorbent assay (ELISA) in patients with IgAGN (n = 80), TBMD (n = 37), membranous nephropathy (MN) (n = 12), minimal change nephrotic syndrome (MCNS) (n = 3), crescentic glomerulonephritis (CGN) (n = 6) and in healthy controls (n = 20), and then compared with urinalysis and renal function. An immunoperoxidase method was used to examine urine sediments for the presence of platelets. Urinary Pf4 was detected in 35 out of 80 patients with IgAGN (median 0.15, range 0.07-2.5 ng/ml, n = 35), in only 2 out of 37 patients with TBMD (p less than 0.005), in all patients with CGN and in no patients from MN, MCNS or control groups. A positive correlation between urinary Pf4 levels and red blood cell counts was observed in patients with IgAGN (r = 0.876, p less than 0.001), but not in TBMD. Pf4 did not correlate with proteinuria or plasma creatinine in either group. Platelets were detected in urine in 10 out of 15 patients with IgAGN but in only 1 out of 9 patients with TBMD. Urinary red blood cell counts in all of these 24 patients were over 100,000/ml.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent

Construction of a novel RNA-transcript-trimming plasmid which can be used both in vitro in place of run-off and (G)-free transcriptions and in vivo as multi-sequences transcription vectors.

We have constructed a new transcription system that allows trimming of both 5' and 3'-termini of any RNA transcripts by means of cis-acting ribozyme activities. The vector consists of a promoter, '5' Processing Ribozyme', any DNA template to be transcribed, and '3' Processing Ribozyme' sequences. When the vector possessing T7 promoter was tested in vitro, the transcription efficiency from the circular template was over ten-fold higher than using linearized template (run-off transcription). Further, since uniform RNAs with defined 5'- and 3'-ends can be produced, this strategy complements the conventional run-off transcription. Also the 5'-/3'-trimmed uniform RNA can function as a reporter in elucidating transcription factors and promoter regions in vitro, this strategy can replace the widely used (G)-free transcription (Sawadogo and Roeder (1985) Proc. Natl. Acad. Sci. USA 82, 4394-4398). With this strategy, in addition to the advantage that the template DNA need not be linearized prior to transcription, a cytidine-minus sequence is no longer necessary for quantitative analysis of transcription factors. Since any sequences including those of RNA virus can be inserted between the '5' Processing Ribozyme' and the '3' Processing Ribozyme' sequences, and the entire unit can be inserted into any genes under active transcription, this construct is useful like that of Dzianott and Bujarski ((1989) Proc. Natl. Acad. Sci. USA 86, 4823-4827) for RNA virologists because these strategies provide RNA transcripts without heterologous sequences which may greatly diminish infectivity. Moreover, since the construct can also be used in vivo, multi-transcripts such as trans-acting ribozymes targeted to various sites would be produced by concatenating the entire units in tandem.

Base Sequence

Rate limiting P-O(5') bond cleavage of RNA fragment: ab initio molecular orbital calculations on the base-catalyzed hydrolysis of phosphate.

In order to examine the energetics in base-catalyzed hydrolysis of RNA, a tentative pentacoordinated intermediate (3) has been characterized by molecular orbital calculations. Ab initio studies at the level of 3-21G* indicate that, under the Cs symmetry restricted conditions, the P-O(2) bond possessing antiperiplanar (app) lone pair electrons (Ip) on the equatorial oxygen (O(3)) can be cleaved with almost no barrier (TS1 transition state; 0.08 kcal mol-1), from the pentacoordinated intermediate (3) of base-catalyzed hydrolysis of phosphate, compared to the P-O(5) bond (TS2 transition state; 28.9 kcal mol-1) which lacks app lp assistance from O(3). The dianionic intermediate, however, loses the TS1 transition state thus its property as an intermediate when the Cs restriction is removed. The analysis of the entire potential energy surface enables us to conclude that, in a related system examined by Lim and Karplus [1990) J. Am. Chem. Soc., 112, 5872-5873) for attack by OH- on ethylene phosphate monoanion, the TS1 transition state had also been lost and thus no intermediate had been found. These results further support our earlier conclusions (Taira et al. (1990) Protein Engineering, 3, 691-701) of rate limiting transition state possessing extended P-O(5') bond breaking character (the TS2 transition state) in the base-catalyzed hydrolysis of RNA. Finally, although the lack of 2',3' -migration of phosphate moieties in basic condition appears to be in accord with the short-lived intermediate, it really does not prove the absence of the intermediate. The detail will be discussed in the text.

Hydrolysis

Gene-specific transposon mutagenesis of the biphenyl/polychlorinated biphenyl-degradation-controlling bph operon in soil bacteria.

A transposon, Tn5-B21, was gene-specifically inserted into the chromosomal biphenyl/polychlorinated biphenyl-catabolic operon (bph operon) of soil bacteria. The cloned bphA, bphB and bphC genes of Pseudomonas pseudoalcaligenes KF707, coding for conversion of biphenyl into a ring meta-cleavage product (2-hydroxy-6-oxo-6-phenylhexa-2,4-dienoic acid), carried random insertions of Tn5-B21. The mutagenized bphABC DNA, carried by a suicide plasmid, was introduced back into the parent strain KF707, resulting in the appearance of gene-specific transposon mutants by double crossover homologous recombination: the bphA::Tn5-B21 mutant did not attack 4-chlorobiphenyl, the bphB::Tn5-B21 mutant accumulated dihydrodiol, and the bphC::Tn5-B21 mutant produced dihydroxy compound. Gene-specific transposon mutants of the bph operon were also obtained for some other biphenyl-utilizing strains which possess bph operons nearly identical to that of KF707.

Biphenyl Compounds

[The relationship of chewing ability to nutrient and food intakes in the community elderly].

The purpose of the present study is to investigate the relationship of chewing ability to nutrient and food intakes in the community elderly. Subjects consisted of 145 elderly residents (56 males, 89 females) ranging in age from 65 to 79 years, living at home in a village of Okinawa Prefecture. Chewing ability was divided into two categories: being able to chew ordinary foods was defined as "good", and being able to chew only soft foods as "bad". To determine quantitative food intakes 24-hour dietary records were utilized which were confirmed by nutritionists during interviews. Good chewing ability was found in 82.1% for males and 83.1% for females with no statistically significant difference concerning age or sex. Teeth status was significantly related to chewing ability. For both males and females, protein intake was lower in the group with bad chewing ability than in the good group. Only in males intakes of total energy, fats, Ca, and Fe were lower in the group with bad chewing ability. Concerning food items, intakes of dark green and yellow vegetables and fat in males, and intake of rice in females, were lower in the group with bad chewing ability.

Aged

Preferential chelation of cationic ligands to axial-equatorial oxygens over equatorial-equatorial dianionic oxygens: implication to the mechanism of action of ribozymes.

Effects of chelation of H2O, H+, and Mg2+ to two kinds of potential pentacoordinate intermediates of ribozyme reactions were investigated by ab initio molecular orbital calculations. Unexpectedly, in all cases examined, axial-equatorial chelations were found to be more stabilizing than equatorial-equatorial chelations. These results support the hypothesis that Mg2+ ion is bound to the equatorial phosphoryl oxygen and the axial leaving/attacking oxygen in the transition state of ribozyme reactions.

Anions

Highly conserved coding sequences in polychlorinated biphenyl (PCB)-degraders of Pseudomonas pseudoalcaligenes KF707 and Pseudomonas putida KF715.

Sixteen strains that utilize biphenyl or polychlorinated biphenyl (PCB) as the sole source of carbon and energy have previously been isolated. Nucleotide sequence of the bphABCXD operon (11 kb) of Pseudomonas pseudoalcaligenes KF707 has now been determined. When bphD region is compared with the previously reported bphD sequence of another PCB-degrader, Pseudomonas putida KF715, homologies at the level of nucleotides as well as amino acids are as high as 96%. Moreover, both bphABCXD operon (KF707) and bphABCD operon (KF715) share the identical transcriptional initiation site. Since these aromatic hydrocarbon-degraders are coded on chromosomes, whereas other majorities of hydrocarbon-degraders are coded on plasmids, there must be a mechanism governing the chromosomal gene-shuffling.

Base Sequence

Energetics of RNA cleavage: implications for the mechanism of action of ribozymes.

A new class of ribozymes produce 2',3'-cyclic phosphate upon self-catalyzed cleavage of RNA molecules, similar to those observed during enzymatic (RNase-catalyzed) as well as non-enzymatic hydrolyses of RNAs. This product suggests that the reaction intermediate/transition state is a pentacoordinated oxyphosphorane. In order to elucidate the energetics of these RNA cleaving reactions, the reaction coordinate has been simulated and a pentacoordinated intermediate has been characterized via ab initio molecular orbital calculations utilizing the dianionic hydrolysis-intermediate of methyl ethylene phosphate as a model compound. The calculated reaction coordinate indicates that the transition state for the P-O(2') bond cleavage is lower in energy than that for the P-O(5') bond cleavage under uncatalyzed conditions. Thus, the dianionic pentacoordinated phosphorus intermediate tends to revert back to the starting RNA by cleaving the P-O(2') bond rather than productively cleaving the P-O(5') bond. In order for ribozymes to effectively cleave RNA molecules, it is therefore mandatory to stabilize the leaving 5'-oxygen, e.g. by means of a divalent magnesium ion.

Catalysis

Construction of a novel artificial-ribozyme-releasing plasmid.

A novel 'active-ribozyme-releasing system' was constructed, taking advantage of the consensus sequence of a new class of ribozyme. An active ribozyme sequence, targeted for the SFL1 gene (a yeast suppressor gene for flocculation) was fused just downstream of the T7 promoter. The 3' terminus of the first ribozyme was designed to be trimmed by the second ribozyme connected to the downstream of the first active ribozyme. In vitro experiments revealed that the active ribozyme targeted to SFL1 was successfully released by the action of the second ribozyme, subsequently cleaving the SFL1 mRNA at the predetermined site. Since the first active ribozyme with a defined 3'-terminus can be produced even when a circular DNA is used as a template, this kind of construct has a potential to release an 'active ribozyme' tailored to destroy a target gene (RNA) in vivo. Moreover, the second ribozyme in this construct can be utilized as a universal pseudo-terminator for generation of any RNA transcripts inserted in place of the cassette portion of the first ribozyme.

Base Sequence

Pseudomonas putida KF715 bphABCD operon encoding biphenyl and polychlorinated biphenyl degradation: cloning, analysis, and expression in soil bacteria.

We cloned the entire bphABCD genes encoding degradation of biphenyl and polychlorinated biphenyls to benzoate and chlorobenzoates from the chromosomal DNA of Pseudomonas putida KF715. The nucleotide sequence revealed two open reading frames corresponding to the bphC gene encoding 2,3-dihydroxybiphenyl dioxygenase and the bphD gene encoding 2-hydroxy-6-oxo-6-phenylhexa-2,4-dienoic acid (ring-meta-cleavage compound) hydrolase.

Amino Acid Sequence