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Molecular analysis and heterologous expression of the gene encoding methylmalonyl-coenzyme A mutase from rifamycin SV-producing strain Amycolatopsis mediterranei U32.

The conversion of succinyl-coenzyme A (CoA) into methylmalonyl-CoA, catalyzed by adenosylcobalamin-dependent methylmalonyl-CoA mutase (MCM), represents an important source of building blocks for rifamycin SV biosynthesis. The structural gene for MCM from rifamycin SV-producing strain Amycolatopsis mediterranei U32 was isolated by using a heterologous gene probe encoding the MCM of Streptomyces cinnamonesis. A 7.8-kbp fragment was sequenced and four complete open reading frames (ORFs) and two incomplete ORFs were found. Two central ORFs, ORF3 and ORF4, overlap by four nucleotides and were found to encode MCM small (602 residues) and large (721 residues) subunits, respectively. Comparison showed that the MCM gene of A. mediterranei U32 was quite similar to those from other sources. The functionally unknown ORF5, immediately downstream of the mutAB gene, was quite similar to the ORFs downstream of mutAB from S. cinnamonensis and Mycobacterium tuberculosis. Such a striking cross-species conservation of gene order suggested that ORF5 could also be involved in the metabolism of methylmalonyl-CoA. MCM gene was overexpressed in Escherichia coli under T7 promoter, and MCM activity could be detected in the recombinant E. coli clone harboring MCM gene after the addition of coenzyme B12. A purification procedure based on the B12 affinity column was established to purify the MCM from E. coli. The molecular weight of purified MCM from E. coli was determined by sodium dodecyl sulfate polyacrylamide gel electrophoresis, which corresponds to that calculated from the MCM protein sequence and is also the same size as that of the enzyme purified directly from A. mediterranei U32. MCM gene was overexpressed in polyketide monensin producing S. cinnamonensis, and the total monensin production was increased by 32%.

Actinomycetales↗

Unclassified poxvirus: characterization and physical mapping of Cotia virus DNA and location of a sequence capable of encoding a thymidine kinase.

DNA from Cotia virus, an unclassified poxvirus, was mapped by overlapping fragment analysis using the restriction endonucleases HindIII, PstI, BamHI, XhoI, SalI, and SmaI. The linear genome was 177 kbp in length and possessed inverted terminal repeats and cross-links. A Cotia virus thymidine kinase (TK) gene was detected and mapped to about 74 kbp from the left end of the genome using degenerate oligonucleotide probes. Nucleotide sequencing of the TK gene revealed an open reading frame (ORF) that encoded a peptide of 178 amino acids. An A/T-rich sequence, TAA AAA TGA ATA AATA, and a transcription termination signal, TTTTTGT, were revealed upstream and just downstream of the ORF, respectively, consistent with the characteristic features of an early poxvirus gene. Cotia virus resembles swinepox virus based on the restriction profiles generated by endonucleases and shares amino acid sequence similarity with orthopox, leporipox, Yaba, and fowlpox viruses.

Amino Acid Sequence↗

Characterization of a ribonucleic acid transcript from the brook trout (Salvelinus fontinalis) ovary with structural similarities to mammalian adipsin/complement factor D and tissue kallikrein, and the effects of kallikrein-like serine proteases on follicle contraction.

A 2.4-kilobase (kb) clone (kallikrein trout #14; KT-14) was isolated from a brook trout ovulatory cDNA library. KT-14 contains an open reading frame (ORF) of 768 base pairs (bp), presumably encoding a protein of 255 amino acids. The KT-14 cDNA also contains a 711 -bp 5' untranslated region and a 793-bp region downstream of the ORF that includes a 66-bp sequence repeated 12 times. The amino acid sequence of the KT-14 ORF is 41 % identical to that of porcine complement factor D and 33% identical to that of porcine pancreatic kallikrein. On Northern blots of ovarian tissue, KT-14 hybridized with four transcripts of 1.8, 2.4, 2.9, and 3.2 kb. While the 3.2- and 2.4-kb transcripts were present in the ovary prior to meiotic maturation, they were significantly up-regulated at ovulation and at 12 h postovulation, respectively. Antibodies constructed against the recombinant KT-14 protein recognized one 30-kDa immunogenic protein in ovarian tissue and fluid. This immunogenic protein was significantly elevated in the tissue by ovulation. Using a follicle weight loss bioassay, we provide indirect evidence that mammalian kallikrein and related serine proteases can stimulate brook trout follicle contraction. Thus, one possible function of the KT-14 protein may be the regulation of oocyte expulsion at ovulation.

Amino Acid Sequence↗

Molecular cloning and chromosomal localization of the Bombyx Sex-lethal gene.

We cloned Bm-Sxl, an orthologue of the Drosophila melanogaster Sex-lethal (Sxl) gene from embryos of Bombyx mori. The full-length cDNAs were of 2 sizes, 1528 and 1339 bp, and were named Bm-Sxl-L and Bm-Sxl-S, respectively. Bm-Sxl-L consists of 8 exons and spans more than 20 kb of genomic DNA. The open reading frame (ORF) codes for a protein 336 amino acids in length. Bm-Sxl-S is a splice variant that lacks the second exon. This creates a new translation start 138 nucleotides downstream and an ORF that codes for 46 amino acids fewer at the N-terminus. Linkage analysis using an F2 panel mapped Bm-Sxl to linkage group 16 at 69.8 cM. We isolated 2 BACs that include the Bm-Sxl gene. With BAC-FISH we located Bm-Sxl cytogenetically on the chromosome corresponding to linkage group 16 (LG16) at position >68.8 cM.

Alternative Splicing↗

[Researches on the nucleotide sequencing of the recombinant Sj 22.6 kDa antigen gene of Schistosoma japonicum].

AIM: To sequence the cloned gene in pGSj24 and to identify the encoded protein. METHODS: The cloned gene in pGSj24 was digested from the recombinant plasmid by EcoRI, ligated into the M13mp19 vector and sequenced by automatic sequencer. The sequence was analyzed by Goldkey DNA and Protein Analytical Program and DNASIS Program. RESULTS: The pGSj24 cloned gene was demonstrated to be 840 bp containing one opened reading frame (ORF) with an initiation codon ATG at position 23 nt and a termination codon TAA at position 596 nt, encoding a protein with a molecular weight of 22.6 kDa. At the upstream and downstream of the ORF there were termination codons, so the encoded protein was unable to be larger. However, there was a termination codon TAA at position 11 nt, suggesting why the 22.6 kDa protein expressed separately. The nucleotide sequence of the pGSj24 cloned gene shared 95% identity with that of the corresponding part of S. japonicum 22.6 kDa antigen gene, and 99.7% identity in the encoding part. The deduced amino acid sequence analysis showed a sequence motif known as EF-Hand calcium binding domain, several endoplasmic reticulum targeting sequences and microbodies C-terminal targeting signals. The possible antigen determinants were predicted within the amino acid fragments of 29-32aa, 63-68aa and 87-101aa. CONCLUSIONS: The cloned gene in pGSj24 is the gene that encodes Sj22.6 kDa antigen.

Amino Acid Sequence↗

Characterization of the Lactobacillus helveticus groESL operon.

This study utilized inverse polymerase chain reactions to characterize a 2.7-kb region of the Lactobacillus helveticus LH212 chromosome that included two complete and one truncated open reading frames (ORFs). Protein homology searches showed that the first two ORFs encoded homologs to the universally conserved heat shock proteins GroES and GroEL. Amino acids encoded by the 5' end of the truncated ORF that was downstream of groEL showed good homology to the amino terminal end of the Streptococcus pneumoniae DNA mismatch repair enzyme HexA. Nucleotide sequence analysis identified a putative transcriptional promoter upstream of groES that was comprised of -35 and -10 hexamers flanked upstream and downstream by copies of the conserved Gram-positive heat shock gene regulatory sequence, CIRCE. A large inverted repeat that may function as a rho-independent transcriptional terminator was located between groEL and the third ORF. Northern hybridization of an LH212 groEL gene fragment to RNA isolated from cells that had been heat shocked at 52 degrees C for 0, 5, 10 or 15 min detected a 2.2-kb transcript in each of the cell preparations. Densitometry showed the concentration of this mRNA species was approximately 4-fold higher after heat shock for 5 or 10 min and 3-fold higher after 15 min of heat shock.

Bacterial Proteins↗

Cloning and characterization of the gene encoding glutamate 1-semialdehyde 2,1-aminomutase, which is involved in delta-aminolevulinic acid synthesis in Propionibacterium freudenreichii.

The gene from Propionibacterium freudenreichii that encodes glutamate 1-semialdehyde 2,1-aminomutase (EC 5.4.3.8), which is involved in the C5 pathway for synthesis of delta-aminolevulinic acid (ALA), a precursor in heme and cobalamin biosynthesis, was cloned onto a multicopy plasmid, pUC18, via complementation of an ALA-deficient mutant (hemL) of Escherichia coli. Subcloning of fragments from the initial 3.3-kb chromosomal fragment allowed the isolation of a 1.9-kb fragment which could complement the hemL mutation. Nucleotide sequence analysis of the 1.9-kb DNA fragment revealed an open reading frame (ORF) that was located downstream from a potential ribosome-binding site. The ORF encoded a polypeptide of 441 amino acid residues, and the deduced molecular mass of this polypeptide is 45,932 Da. A high G+C content (70 mol%) of the codons of the ORF was found and was consistent with the taxonomic features of Propionibacterium species. The amino acid sequence showed a high degree of homology with those of the HemL proteins from other organisms, and a putative binding site for pyridoxal 5'-phosphate was conserved, with the exception of a single substitution of phenylalanine for leucine. These results suggest that ALA is synthesized via the C5 pathway in a producer of vitamin B12, P. freudenreichii.

Amino Acid Sequence↗

Molecular characterization and transcriptional analysis of the putative hydrogenase gene of Clostridium acetobutylicum ATCC 824.

A 2.8-kbp DNA region of Clostridium acetobutylicum ATCC 824 containing the putative hydrogenase gene (hydA) was cloned and sequenced. The 1,745-bp hydA encodes a 64,415-Da protein and presents strong identity with the [Fe] hydrogenase genes of Desulfovibrio and Clostridium species. The level of the putative hydA mRNA was high in cells from an acidogenic or an alcohologenic phosphate-limited continuous culture, while it was comparatively very low in cells from a solventogenic phosphate-limited continuous culture. These results were in agreement with the hydrogenase protein level, indicating that expression of hydA is regulated at the transcriptional level. Primer extension analysis identified a major transcriptional start site 90 bp upstream of the hydA start codon. The position of a putative rho-independent transcription terminator immediately downstream of the termination codon is in agreement with the size of the hydA transcript (1.9 kb) determined by Northern (RNA) blot experiments and confirms that the gene is transcribed as a monocistronic operon. Two truncated open reading frames (ORFs) were identified downstream and upstream of hydA and in opposite directions. The amino acid sequence deduced from ORF2 presents strong identity with ortho phosphoribosyl transferases involved in pyrimidine synthesis. The amino acid sequence deduced from ORF3 presents no significant similarity to any sequence in various available databases.

Amino Acid Sequence↗

Sequence analysis of an 11.2 kilobase, near-terminal, BamHI fragment of fowlpox virus.

The nucleotide sequence of an 11.2 kilobase fragment of the fowlpox virus genome is presented. The fragment comes from near one end of the genome and contains part of the terminal inverted repeat. Twenty open reading frames (ORFs) are predicted from the sequence and are classified into 13 major and seven minor ORFs. The 100 base pairs immediately upstream of each ORF are up to 83% AT-rich, with some motifs similar to those seen in vaccinia virus early gene promoters. The TTTTTNT element which has been identified as a termination signal for vaccinia virus early genes is also found downstream of several ORFs. Three ORFs are predicted to specify polypeptides with significant homology to proteins coded by genes near termini of orthopoxvirus genomes: the vaccinia virus 42K early gene and 32.5K host range gene, and the cowpox virus 38K red pock gene. In addition, there are two families of ORFs within the fragment which potentially encode related polypeptides. One of these, family B, contains three ORFs which are related to those of chicken and rat hepatic lectins.

Amino Acid Sequence↗

Vaccinia virus homologues of the Shope fibroma virus inverted terminal repeat proteins and a discontinuous ORF related to the tumor necrosis factor receptor family.

Nucleotide sequencing data from a region extending 35 kb inward from the right inverted terminal repeat (ITR) of the vaccinia virus (VV) genome established the presence of VV homologues of the Shope fibroma virus (SFV) ITR proteins. The nucleotide sequences, comprising a total of 8.6 kb, and the amino acid translations for nine predicted open reading frames (ORFs) (designated SalF4L, SalF 19R, SalF21R, B4R, B8R, B9R, B10R, and B14R) are presented. Eight of the nine VV genes and all the SFV ORFs are transcribed towards their genomic termini. However, the relative positions of the VV genes (genus Orthopoxvirus) are different than those of the corresponding ORFs in SFV (genus Leporipoxvirus), indicating complex rearrangements of DNA in the genome of one or both of these viruses subsequent to their divergence from a common ancestor. Several other features of the VV ORFs were noted. SalF4L, B7R, B8R, and B9R have hydrophobic amino-terminal signal sequences but lack discernible membrane anchor domains suggesting that the proteins may be secreted. VV ORF SalF19R has a single cysteine-rich region homologous to the multiple domains of nerve growth factor receptor (NGFR), CD40, OX40 (a glycoprotein from the surface of activated murine T lymphocytes), and the recently described tumor necrosis factor receptors. Just downstream of the ORF SalF19R and in a different reading frame, there are another two related cysteine-rich domains, indicating that SalF19R was once a larger gene. B4R has homology to the host range gene of cowpox virus and to related genes near the opposite end of the vaccinia virus genome, and contains regions homologous to the repeat domains of erythrocyte ankyrin. In addition, several of the VV ORFs have homology to ORFs from near the opposite end of the VV genome, thus increasing the number of known VV gene families.

Amino Acid Sequence↗

A cheA cheW operon in Borrelia burgdorferi, the agent of Lyme disease.

Borrelia burgdorferi sensu stricto homologues of cheA and cheW were cloned and characterized. A combination of strategies such as polymerase chain reaction (PCR) using degenerate primers, random-primed gene walking PCR and construction of a lamda library were used to identify the putative cheA gene. Sequence analysis of the DNA fragments obtained from the CT strain identified a 2,592-bp open reading frame (ORF) encoding an 864-amino-acid protein with significant similarity (53-64.6% identical residues) to the CheA of several genera of eubacteria. In particular, hallmarks of a histidine kinase family were found such as the location of the histidine autophosphorylation domain very close to the NH2 terminus and the nucleotide-binding site. A second ORF located immediately downstream from the putative borrelial cheA gene encoded a 195-amino-acid protein which displayed a high level of similarity to bacterial CheW. Using reverse transcription PCR, we demonstrated that cheA and cheW form an operon with an upstream, unidentified ORF. The cheA and cheW homologues were located at 722-737 kbp, 738-768 kbp and 743-824 kbp on the linear chromosomes of B. burgdorferi sensu stricto, B. garinii and B. afzelii, respectively. Identification of cheA and cheW is the first step toward elucidation of a possible role of chemotaxis in virulence of the Lyme disease borreliae.

Amino Acid Sequence↗

The nature of naturally occurring mutations in the hemagglutinin gene of vaccinia virus and the sequence of immediately adjacent genes.

The expression of the vaccinia IHD-J hemagglutinin (HA) gene is regulated by two promoters, an early/late and a second distinct late promoter. The first promoter results in transcripts that begin early and are synthesized throughout the infection. All transcripts from this promoter initiate at the same 5' site. A second promoter is only active late in infection and initiates transcription some distance upstream of the first promoter. We have previously shown that the transcriptional start site controlled by this second, "late only" promoter lies within the coding sequence of an upstream reading frame (p16-ORF), whereas the termination of early transcription of the HA gene utilizes a transcription termination signal (TTTTTNT) located just beyond the coding region of an immediately downstream reading frame (p17-ORF). In order to assist our understanding of HA gene expression, we report here the sequence of these two ORFs adjacent to the HA gene. The HA-ORF itself consists of 945 bp, whereas the upstream p16-ORF consists of 429 bp and the downstream p17-ORF of 453 bp, sufficient to encode polypeptides of 16 and 17 kD, respectively. While many strains of vaccinia are HA+, rabbitpox virus and the variant of vaccinia IHD-J, designated IHD-W, are HA-. We report and compare here the HA gene sequences of wild-type rabbit poxvirus, two spontaneous HA+ revertants of rabbit poxvirus, and the HA- vaccinia strain IHD-W to that of the previously sequenced (1) prototype HA+ IHD-J strain of vaccinia. All differences were found to occur within the HA open reading frame.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Sequence↗

DNA sequence and mutational analysis of rhizobitoxine biosynthesis genes in Bradyrhizobium elkanii.

We cloned and sequenced a cluster of genes involved in the biosynthesis of rhizobitoxine, a nodulation enhancer produced by Bradyrhizobium elkanii. The nucleotide sequence of the cloned 28.4-kb DNA region encompassing rtxA showed that several open reading frames (ORFs) were located downstream of rtxA. A large-deletion mutant of B. elkanii, USDA94 Delta rtx::Omega 1, which lacks rtxA, ORF1 (rtxC), ORF2, and ORF3, did not produce rhizobitoxine, dihydrorhizobitoxine, or serinol. The broad-host-range cosmid pLAFR1, which contains rtxA and these ORFs, complemented rhizobitoxine production in USDA94 Delta rtx::Omega 1. Further complementation experiments involving cosmid derivatives obtained by random mutagenesis with a kanamycin cassette revealed that at least rtxA and rtxC are necessary for rhizobitoxine production. Insertional mutagenesis of the N-terminal and C-terminal regions of rtxA indicated that rtxA is responsible for two crucial steps, serinol formation and dihydrorhizobitoxine biosynthesis. An insertional mutant of rtxC produced serinol and dihydrorhizobitoxine but no rhizobitoxine. Moreover, the rtxC product was highly homologous to the fatty acid desaturase of Pseudomonas syringae and included the copper-binding signature and eight histidine residues conserved in membrane-bound desaturase. This result suggested that rtxC encodes dihydrorhizobitoxine desaturase for the final step of rhizobitoxine production. In light of results from DNA sequence comparison, gene disruption experiments, and dihydrorhizobitoxine production from various substrates, we discuss the biosynthetic pathway of rhizobitoxine and its evolutionary significance in bradyrhizobia.

Amino Acid Sequence↗

Genomic location and nucleotide sequence of a serotype 3 porcine adenovirus hexon gene.

The putative hexon gene of a porcine adenovirus serotype 3 (PAV3) has been identified, cloned and the nucleotide sequence determined. The genomic location of the PAV3 hexon gene was determined and an open reading frame (ORF) encoding a polypeptide of 939 amino acids identified. Comparison of the nucleotide sequence of the putative PAV3 hexon gene with the sequence of the HAV2 hexon gene returned an overall identity of approximately 63%. A stop codon 144 nucleotides upstream and a start codon 18 nucleotides downstream of the ORF were identified and comparison with the HAV genome demonstrated that their positions corresponded to the stop site of the pVI gene and start site of the 23K gene, respectively. To confirm the correct start codon of the putative PAV3 hexon gene, the acceptor splice site for the putative PAV3 hexon gene was determined from cDNA and found to be between the two guanines immediately upstream of the first ATG in the ORF. Comparison with the HAV2 hexon protein showed overall identity of approximately 65%, with higher identity in the carboxy-terminus of approaching 76% over 380 amino acids. Multiple alignment of the PAV3 hexon amino acid sequence with other known HAV and animal adenovirus hexon sequences indicated that conservation is generally maintained but that identity is much lower within the loop structures of the protein.

Amino Acid Sequence↗

In vivo expression and mutational analysis of the barley yellow dwarf virus readthrough gene.

The barley yellow dwarf virus (BYDV) coat protein gene is separated from an adjacent downstream open reading frame (ORF) by a single termination codon. Immunological analysis of this downstream "readthrough" region reveals multiple coat protein-readthrough products. A full-length 72-kDa (P72) coat protein-readthrough fusion product is detected in total lysates from infected cells. However, purified aphid transmissible virions contain only a 50-kDa (P50) coat protein-readthrough product. Virion-associated P50 lacks the C-terminal domain predicted by its ORF sequence. A separate 33-kDa polypeptide (P33) corresponding to the readthrough C-terminus domain is detected in the crude cellular membrane fraction. Site-directed and deletion mutational analysis demonstrate that the readthrough ORF is dispensable for BYDV replication and virion accumulation in protoplasts. In contrast, a mutant which results in a continuous fusion product of coat and readthrough sequences is not viable. Point mutations were used to map regions required for P50 and P72 synthesis. A model explaining the relationships between the three forms of the readthrough polypeptides is proposed.

Base Sequence↗

Hot spot mutations in morphological transforming region II (ORF 79) of cytomegalovirus strains causing disease from bone marrow transplant recipients.

Nested polymerase chain reaction (PCR) amplifying the morphological transforming region II (mtrII) of cytomegalovirus (CMV) has been shown to be useful in the detection of CMV DNA in bone marrow transplant (BMT) recipients. However, there has never been any report on mutation hot spots and subtypes of this open reading frame. Using primers derived from sequences upstream and downstream of mtrII (ORF 79), CMV DNA from peripheral blood leukocytes (PBL) and conventional CMV culture of 16 BMT recipients were amplified by PCR, cloned into pUC118, and sequenced. The amino acid sequences were predicted using the standard triplet code. The DNA sequences obtained from direct amplification of CMV in PBL obtained from the 16 patients were 100% identical to the corresponding ones obtained by amplification of CMV DNA extracted from conventional CMV culture. Within mtrII (ORF 79), hot spot single base mutations were observed at positions +40 (G-->A), +123 (A-->G), +213 (T-->C), and +219 (T-->C). However, because of third base degeneracy, only amino acid 14 was changed from valine to isoleucine in the predicted protein of 13 patients. This corresponded to the hot spot mutation at position +40 (GTC-->ATC), while the rest were silent mutations. An insertion of 3 bases (ACG) was observed in the CMV DNA of 10 patients at positions +91 to +93, leading to a threonine insertion at amino acid 31 in these patients. For patient no. 147 there was a 65 bp deletion in the CMV DNA amplified later in the course of BMT as compared with that early in the course. This gave rise to a frame shift mutation and a change of more than 70% in the predicted amino acid sequence of the protein.

Amino Acid Sequence↗

The LicT protein acts as both a positive and a negative regulator of loci within the bgl regulon of Streptococcus mutans.

An open reading frame (ORF) that would encode a putative antiterminator protein (LicT) of the BglG family was identified in the genomic DNA sequence of Streptococcus mutans. A DNA sequence that would encode a potential ribonucleic antiterminator (RAT) site in the mRNA at which the putative antitermination protein LicT would bind was located immediately downstream from this ORF. These putative antitermination components are upstream of a glucose-independent beta-glucoside-utilization system that is responsible for aesculin utilization by S. mutans NG8 in the presence of glucose. It was hypothesized that these putative regulatory components were an important mechanism that was involved with the controlled expression of the S. mutans bglP locus. A strain of S. mutans containing a licT : : Omega-Kan2 insertional mutation was created. This strain could not hydrolyse aesculin in the presence of glucose. The transcriptional activity associated with other genes from the bgl regulon was determined in the licT : : Omega-Kan2 genetic background using lacZ transcriptional fusions and beta-galactosidase assays to determine the effect of LicT on these loci. The LicT protein had no significant effect on the expression of the bglC promoter, a regulator of the bglA locus. However, it is essential for the optimal expression of bglP. These data correlate with the phenotype observed on aesculin plates for the S. mutans wild-type strain NG8 and the licT : : Omega-Kan2 strain. Thus, the glucose-independent beta-glucoside-specific phosphotransferase system (PTS) regulon in S. mutans relies on LicT for BglP expression and, in turn, aesculin transport in the presence of glucose. Interestingly, LicT also seems to negatively regulate the expression of the bglA promoter region. In addition, the presence of the S. mutans licT gene has been shown to be able to activate a cryptic beta-glucoside-specific operon found in Escherichia coli.

Bacterial Proteins↗

The plastome-encoded zfpA gene of a moss contains procaryotic as well as eucaryotic promoter consensus sequences and its RNA abundance is modulated by cytokinin.

Plastid DNA of the moss Physcomitrella patens has been sequenced. An open reading frame (ORF 315) was identified downstream from rbcL, between trnR-CCG and psaI. This ORF shares homology with zfpA, a putative regulatory gene in Pisum sativum. The moss ORF is preceded by a Shine-Dalgarno sequence, two plastid promoter consensus sequences, and three TATA boxes. A specific probe detected three transcripts of low abundance in the wild-type moss and a cytokinin-sensitive chloroplast mutant. Steady state levels of zfpA transcripts were different in the two genotypes. In mutant protonemata treated with cytokinin, steady state levels of the largest transcript decreased significantly.

Amino Acid Sequence↗