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A Oka

Publications and source records attributed to A Oka.

At least 109 records · Page 6Linked to original sources

Exon-intron organization of the Arabidopsis thaliana protein kinase genes CDC2a and CDC2b.

We have previously shown by cDNA cloning that a higher plant, Arabidopsis thaliana, possesses at least two CDC2 genes (CDC2a and CDC2b) similar to the cell-cycle-controlling cdc2 gene of Schizosaccharomyces pombe. To understand the exon-intron organization of these genes, genomic clones were isolated and their nucleotide sequences determined. The coding and 5'-untranslated regions of CDC2a were interrupted by seven and one introns, respectively, whilst CDC2b contained three introns within the coding portion. These intron positions partly overlapped with each other and with those of the yeast cdc2 gene, nevertheless the lengths and sequences of the corresponding introns were diverse.

Amino Acid Sequence↗

Novel protein kinase of Arabidopsis thaliana (APK1) that phosphorylates tyrosine, serine and threonine.

During the course of characterizing polymerase chain reaction products corresponding to protein kinases of a higher plant, Arabidopsis thaliana, we found a DNA fragment that potentially codes for a polypeptide with mosaic sequences of two classes of protein kinases, a tyrosine-specific and a serine/threonine-specific one. Overlapping complementary DNA (cDNA) clones coinciding with this fragment were isolated from an A. thaliana cDNA library. From their sequence analyses a protein kinase was predicted composed of 410 amino acid residues (APK1, Arabidopsis protein kinase 1), in which the kinase domain was flanked by short non-kinase domains. Upon expression of APK1 in Escherichia coli cells, several bacterial proteins became reactive with anti-phosphotyrosine antibody but not with the same antibody preincubated with phosphotyrosine, convincing us that APK1 phosphorylated tyrosine residues. APK1 purified from an over-producing E. coli strain showed serine/threonine kinase activity, and no tyrosine kinase activity, towards APK1 itself, casein, enolase, and myosin light chains. APK1 was thus concluded to be a novel type of protein kinase, which could phosphorylate tyrosine, serine, and threonine residues, though tyrosine phosphorylation seemed to occur only on limited substrates. Since the structure of the APK1 N-terminal portion was indicative of N-myristoylation, APK1 might associate with membranes and thereby contribute to signal transduction. The A. thaliana genome contained two APK1 genes close to each other (APK1a and APK1b).

Amino Acid Sequence↗

Identification of two cell-cycle-controlling cdc2 gene homologs in Arabidopsis thaliana.

The cdc2 gene product (p34cdc2) has been thought to play a central role in control of the mitotic cell cycle of yeasts and animals. To approach an understanding of the cell-cycle-control system in higher plants, we isolated, from an Arabidopsis thaliana cDNA library, two clones (CDC2a and CDC2b) similar to the Schizosaccharomyces pombe cdc2 gene. Genomic Southern-blot analysis with the CDC2a and CDC2b cDNA probes suggested that the A. thaliana genome contains several additional cdc2-like genes, which together with the CDC2a and CDC2b genes may constitute a CDC2 gene family. The CDC2a cDNA expressed in Sc. pombe corrected the elongated morphology, caused by the temperature-sensitive cdc2-33 mutation, to the normal shapes, indicating that the A. thaliana CDC2a gene product resembles Sc. pombe p34cdc2 functionally as well as structurally. These results support the view that the cell cycle of higher plants is controlled by an analogue of a p34cdc2-centered regulatory system like that of yeasts and animals.

Amino Acid Sequence↗

Cross-talk between the virulence and phosphate regulons of Agrobacterium tumefaciens caused by an unusual interaction of the transcriptional activator with a regulatory DNA element.

Transcription of a virulence gene on the hairy-root-inducing plasmid A4, which is induced by plant factors in Agrobacterium tumefaciens, was also activated by phosphate limitation in both A. tumefaciens and Escherichia coli. The starting site of RNA synthesized under the two inducing conditions was the same, and an identical promoter was responsible for both inducible expressions. The response of the virulence gene to phosphate limitation did not require the positive regulator VirG for the virulence regulon, but depended entirely on the presence of PhoB protein, the positive regulator for the phosphate regulon. The DNA signal upstream of the virulence gene, which is targeted by the VirG protein, was recognized by the E. coli PhoB protein in vitro. These results indicate that cross-talk between the two regulons occurred during the recognition of a DNA signal by the regulatory protein.

Bacterial Proteins↗

Binding of the regulatory protein VirG to the phased signal sequences upstream from virulence genes on the hairy-root-inducing plasmid.

The VirG protein is a positive regulator for the virulence genes of which expression is induced by a plant factor, and is essential for Agrobacterium pathogenicity on dicotyledonous plants. The VirG protein of the hairy-root-inducing plasmid A4 was overproduced in Escherichia coli cells, and purified to homogeneity. DNase I footprinting experiments revealed that the purified VirG protein was bound to the upstream region of virulence genes including the phased vir box sequences, which had been presumed to be the VirG recognition signal from the sequence analysis. In dimethyl sulfate footprinting, the VirG protein specifically protected the guanine residues within every vir box sequence. It was concluded that the VirG protein was bound to the phased vir box sequences from the major groove along one side of double-helical DNA.

Base Sequence↗

Characterization of the virA gene of the agropine-type plasmid pRiA4 of Agrobacterium rhizogenes.

We sequenced a 4.2-kb DNA region encompassing the vir A locus of the hairy-root-inducing plasmid pRiA4, and compared its sequence with the published vir A region sequences of four tumor-inducing plasmids. An open reading frame capable of coding for 829 amino acids was identified for vir A. Deletion mutants of vir A constructed by fusing to lacZ, but not the wild-type game itself, were efficiently expressed in Escherichia coli when they were put downstream front the lac promoter. These fused gene products became soluble or insoluble depending on the length of their lacZ moieties.

Amino Acid Sequence↗

A common mechanism of transcriptional activation by the three positive regulators, VirG, PhoB, and OmpR.

VirG, PhoB, and OmpR are positive regulators of the virulence, phosphate, and osmolarity regulons, respectively. Their target genes are attended with one or more significant blocks of similar 6-bp sequences in their regulatory regions. The distance between the block(s) and transcriptional start site varies with the target genes, but the blocks are located in a similar manner phase-specific to the promoter sequences. On the basis of these facts, we offer a novel model of transcriptional activation common to these regulators.

Bacterial Proteins↗

Signal structure for transcriptional activation in the upstream regions of virulence genes on the hairy-root-inducing plasmid A4.

The inducibility of the vir genes (virA, -B, -C, -D, -E, and -G) on pRiA4 was examined at the transcriptional level, and the RNA-starting sites were determined by S1-nuclease mapping and primer-extension experiments. All of these genes were inducible, while virA, -E, and -G were transcribed even under noninducing conditions. Each transcription of virB, -C, -D, and -E was initiated at one particular site, but that of virA and -G occurred at two and three sites, respectively, depending on the conditions used. In the DNA region upstream from each inducible transcript, one or more blocks of six base-pairs, 5'TGATAACT3' (vir box), were found to be placed characteristically. These blocks were phasing with an interval of 11 base-pairs, and the most upstream one in each upstream region was preceded by an additional block in the inverted orientation. Although the distance between the block(s) and the promoter varied with the vir gene, every block was placed in a phase nearly opposite to the -35 and -10 regions of the promoter.

Bacterial Proteins↗

Putative start codon TTG for the regulatory protein VirG of the hairy-root-inducing plasmid pRiA4.

The nucleotide sequence of the virG gene for a transcriptional activator on the agropine-type hairy-root-inducing plasmid pRiA4 was determined. The sequence contained one possible open reading frame. The gene product with a molecular size of 26.5 kDa was identified by an Escherichia coli coupled-transcription-translation system using cloned virG plasmids as templates. However, neither an ATG nor a GTG start codon which could give rise to such a protein was identified in the nucleotide sequence. Instead, TTG was found as a candidate for the start codon. This TTG was preceded, like most other TTG start codons, by both a Shine-Dalgarno (SD) sequence and a T signal which are respectively complementary to the 3'-end region of 16S rRNA and the T psi loop of initiator tRNA. Further evidence for the start at TTG was obtained by gene fusion experiments. When the E. coli lacZ gene, whose expression entirely depends on the transcription and translation from upstream regions, was connected in-phase with virG either directly upstream or downstream of the TTG sequence, only the latter fused gene expressed the beta-galactosidase activity in Agrobacterium cells in response to a plant phenolic compound, acetosyringone. The TTG codon preceded by an SD sequence and a T signal is also conserved in the virG sequences from other three tumor-inducing plasmids previously reported.

Amino Acid Sequence↗

Sequence determination and characterization of the replicator region in the tumor-inducing plasmid pTiB6S3.

The replicator region of the 195-kilobase-pair (kb) tumor-inducing plasmid pTiB6S3 was previously identified by isolation of a 6.8-kb miniplasmid (B.P. Koekman, P.J.J. Hooykaas, and R.A. Schilperoort, Plasmid 7:119-132, 1982). This miniplasmid was joined to ColE1-based vectors and subjected to mutagenesis. The resulting mutant plasmids were examined for their ability to replicate autonomously in Agrobacterium tumefaciens. It was found that a 4.2-kb region was sufficient for displaying replication characteristics similar to those of the parental pTiB6S3. Nucleotide sequence analysis of this 4.2-kb region revealed the presence of three possible reading frames in the same direction (repA, repB, and repC). Proteins coded for by these frames were identified by in vitro synthesis in a coupled transcription-translation system. The replicating ability became attenuated by repA and repB mutations but was completely abolished by repC mutations. The size, arrangement, and mutational effects of the three rep genes were quite similar to those of the rep genes that were previously identified in the hairy root-inducing plasmid pRiA4b. However, defects caused by rep mutations in one plasmid were unable to be complemented by corresponding functions in the other plasmid.

Amino Acid Sequence↗

Signal structure of the cis-acting element recognized by VirG protein, a positive regulator in Agrobacterium.

VirG protein is known to be the positive regulator for vir genes of Ri and Ti plasmids in Agrobacterium. To investigate the cis-acting element recognized by VirG, we have determined the transcriptional start points of the vir genes on Ri plasmid (pRiA4b). From the analysis of the upstream sequences, it has been found that the sequences generally similar to 5'TG(A/T)AA(C/T)3' appear in phase with an 11-base pair interval, and that the -35 and -10 regions of the promoters are located nearly in the reversal phase with those phasing sequences. These sequence characteristics are conserved in the vir genes on Ti plasmids (pTiA6 and pTiC58). Moreover, the similar sequence structures were found in the regulatory regions of the genes controlled by PhoB and OmpR, which are the E. coli positive regulators closely related to VirG in their amino-acid sequences.

Bacterial Proteins↗

Organization and characterization of the virCD genes from Agrobacterium rhizogenes.

We have precisely localized virulent (vir) genes of the hairy root-inducing plasmid pRiA4b on the basis of sequence similarity with the tumor-inducing plasmid pTiA6NC, and shown that the overall organizations of vir genes in both plasmids are fairly analogous, although sizes and spacer lengths in some genes differ from each other. Among the vir genes thus mapped, the virC and virD loci were characterized in detail. Transposon insertions in virD led to loss of tumorigenicity on Kalanchoe stems and carrot discs, and one within virC exhibited an attenuated pathogenicity. The avirulent phenotype of the virD2 strain among these mutants was due to the lack of ability to recombine T-DNA border repeats in Agrobacterium cells. The nucleotide sequence of most parts of the virCD loci were similar in both plasmids. The virCD genes of these two plasmids, therefore, seem comparable both functionally and structurally. Phylogeny of pRi and pTi has also been discussed from the sequence data.

Amino Acid Sequence↗

Sites of dnaA protein-binding in the replication origin of the Escherichia coli K-12 chromosome.

On the basis of the observation that dnaA protein binds preferentially to DNA fragments carrying the Escherichia coli chromosomal replication origin (oriC), the binding sites were investigated by DNase I footprinting. As a result, three strong binding sites were identified in the minimal oriC sequence. The respective binding sites were 16 to 17 base-pairs long, and contained a common sequence (5') T-G-T-G-(G/T)-A-T-A-A-C (3') in the middle, although their polarities were not the same. Since mutants defective in function for autonomous replication have been isolated in the corresponding positions of the common sequence at each binding site, dnaA protein-binding at these sites seems to be significant for replication initiation.

Bacterial Proteins↗

Sequence organization of replication origin of the Escherichia coli K-12 chromosome.

A sequence of 245 base-pairs (oriC) in the replication origin of the Escherichia coli K-12 chromosome has been shown to provide all the information essential for initiation of bidirectional replication. In order to elucidate the sequence organization of oriC, numerous mutants carrying a single-to-multiple transitions from G X C to A X T base-pair were constructed by localized mutagenesis in vitro, which uses sodium bisulfite, and the correlation between the mutation sites and replicating ability (Ori function) was systematically analyzed. By isolating non-defective (Ori+) mutants with multiple base changes, transitions at 71 positions among 101 G X C pairs in oriC were found to have no effect on Ori function. Investigation of defective (Ori-) mutants, on the other hand, showed that individual replacements at 18 positions were detrimental to Ori function to some extent. These irreplaceable G X C pairs fell in the positions where no substitution was detected in the Ori+ mutants. The defect of the Ori- mutants with a single base substitution was generally weaker than that of the previously constructed Ori- mutants lacking a part of oriC. The addition of two or more base changes each giving a faint Ori- phenotype, however, resulted in a more intensive Ori- phenotype. We have previously demonstrated that oriC contains several regions where deletion or insertion of oligonucleotides leads to strong Ori- phenotypes. Transitions in those areas did not cause any defect of Ori function. Combining present results on base substitution mutants with the previous observations together, we assumed that the oriC sequence provides multiple interaction sites with replication initiation factors, and the precise arrangement of these sites are required for Ori function.

Base Composition↗

The 245 base-pair oriC sequence of the E. coli chromosome directs bidirectional replication at an adjacent region.

The replication origin of the E. coli K-12 chromosome has been isolated as autonomously replicating molecules(oriC plasmid), and the DNA region essential for replicating function(oriC) has been localized to a sequence of 232-245 base-pairs(bp) by deletion analysis. In this report, the functional role of oriC was analysed by using an in vitro replication system and various OriC+ and OriC- plasmids previously constructed. The results obtained were summarized as follows: (1) The oriC sequence contained information enough to direct bidirectional replication. (2) The actual DNA replication began at a region near, but outside, oriC and progressed bidirectionally. (3) Initiation of DNA synthesis at the specific region required the dnaA-complementing fraction from cells harboring a dnaA-carrying plasmid.

Base Sequence↗

Structure of replication origin of the Escherichia coli K-12 chromosome: the presence of spacer sequences in the ori region carrying information for autonomous replication.

The replication origin region of the Escherichia coli K-12 chromosome has been cloned, and a region of 245 base-pairs has been shown to contain all the information for autonomous replication (defined ori). In order to obtain further information on the sequence organization in the defined ori stretch, various types of mutation were introduced by in vitro techniques at a restriction site (AvaII site) which locates near the middle of ori. When the correlation between these mutations and replicating function was examined, different effects were obtained with the types of mutation: the replicating function was completely destroyed by either insertion or deletion of short sequences, but not by base-substitutions. Based on these observations and on the fact that multi-gene products are involved in the initiation of replication, we assume that two categories of sequences are present within the ori stretch, one specifying interaction with initiation factors (recognition sequences) and the other spacing the recognition sequences in appropriate distances (spacer sequences), and that the AvaII site is located in the spacer region.

Base Composition↗

Combination chemotherapy of advanced non-Hodgkin's lymphoma with adriamycin, vincristine, ifosfamide and prednisolone (AVIP): a preliminary report.

Eighteen patients with advanced non-Hodgkin's lymphoma other than the diffuse histiocytic type were treated with a combination of adriamycin, vincristine, ifosfamide and prednisolone (AVIP). The objective response rate was 83% (15/18); 61% (11/18) achieved complete remission. The median duration of complete remission was 11 months ranging from 2 to 39+ months. Eleven of the 18 patients are still alive during the median follow-up time of 13 months. The median survival was 14+ months for complete responders, and 9.5 months for partial and nonresponders. A myelosuppressive toxicity was well tolerated. AVIP offers some hope as treatment of advanced non-Hodgkin's lymphoma.

Adolescent↗