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1.
We describe the isolation and sequencing of the hip gene of Escherichia coli and show that it encodes the β subunit of integration host factor (IHFβ). In order to locate the coding region, we constructed a set of deletion mutants by exonucleolytic digestion of a fragment containing hip, determined which mutants were hip+ and which hip? by complementation, and then sequenced the ends of the critical deletions. The 5′ end of the coding region was located precisely by comparing the deduced amino acid sequence to the actual N-terminal amino acid sequence of IHF. Our assignment of the coding region was further substantiated by the nucleotide sequences of a hip point mutant and of internal replacement mutations. We found a probable promoter for hip located about 85 base-pairs upstream from the initial AUG codon and about 75 base-pairs downstream from the 3′ end of the neighboring gene. rpsA, and we constructed an IHFβ overproducer by fusing the coding sequences to the λpL promoter. A survey of known protein sequences revealed a close relationship between IHFβ and the type II prokaryotic DNA binding proteins (the “histone-like” proteins). This relationship is shared to a considerable extent by the other subunit of IHF, IHFα. A hip missense mutation that replaces a completely conserved glycine with aspartate has a null phenotype, suggesting that the conserved regions are functionally important.  相似文献   

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In order to isolate the gene for amber suppressor su+2 (SupE) in Escherichia coli, a non-defective su+2-transducing phage lambda was isolated in three steps: first, deletion derivatives of F′su+2 gal (λ) were selected, linking su+2 to the right-hand prophage attachment site, attλPB′; second, these F′-factors were relysogenized by λ and defective transducing phages, λdsu+2, were produced by induction; and third, non-defective λpsu+2 transducing phages were produced by recombination of λdsu+2 isolates with λ. Upon infection by λpsu+2, the production of transferRNAs accepting glutamine and methionine was markedly stimulated. Fingerprint analysis of these tRNAs revealed that they consisted of normal tRNA2Gln, mutant tRNA2Gln and tRNAmMet. The mutant tRNA2Gln carried a singlebase alteration from G to A at the 3′-end of the anticodon. The production of tRNA1Gln was not stimulated by the infection of λpsu+2. We conclude that the wild-type allele of su+2 (SupE) is the structural gene for tRNA2Gln, and the su+2 amber suppressor was derived by a single base mutation, changing the anticodon from CUG to CUA, in one of the multi-copy genes for tRNA2Gln. The fact that λpsu+2 also induces the production of tRNAmMet suggests that this tRNA is encoded in the same chromosomal region of E. coli as is tRNA2Gln.  相似文献   

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During vegetative growth φ80)sus2psu3+ and φ80int3sus2psu3+ segregate su3? progeny phages, which have lost suppressor activity, at high frequency, even in the absence of the host Rec system. DNA molecules of the su3? segregants were equivalent to φ80 DNA, as determined by heteroduplex analysis. Loss of suppressor activity is ascribed either to unequal intermolecular crossing-over or to excision by internal recombination between two homologous regions of the phage genome which bracket the bacterial segment containing the su3+ gene. To investigate the recombination system acting on the segregation of su3? phages, a fec?int? deletion derivative of φ80sus2psu3+, φ80Δ4sus2psu3+, has been isolated that is stable even after several cycles of growth in the absence of the host Rec system. However, segregation of su3? phages from φ80Δ4sus2psu3+ was observed when it was complemented in vivo with the hybrid phage λatt80imm80 in the absence of the host Rec system. The Δ4 deletion is 12.4% of the φ80 genome, starting at a distance of 1.6% φ80 unit to the right from the φ80 crossover point, pp′, i.e. located between 54.6% and 67.0% φ80 unit, as measured from the left (0%) termini of the mature φ80 DNA molecules. By locating the regions of homology between the DNAs of λ and φ80 (Fiandt et al., 1971), the region deleted in φ80Δ4sus2psu3+ was assigned to the genes of the phage Red system and a part of the int gene. In the presence of the host Rec system, φ80Δ4-sus2psu3+ segregates both phages, φ80Δ4sus2 and φ80Δ4sus2p(su3+)2, which were excised or duplicated for su3+-transducing fragments. The loss of the duplication in φ80Δ4sus2p(su3+)2 is also promoted by the host Rec system. Either of two generalized recombination systems, viral Red system or host Rec system, can play a role in the production of the excisions and the duplications of transducing fragments.  相似文献   

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The chromosomal tonB gene of Escherichia coli was used as a target for the detection of spontaneous deletion mutations. The deletions were isolated in both recA + and recA ? cells, and mutants carrying large deletions were identified because they also lacked part or all of the trp operon. The frequencies of tonB-trp deletion were 1.79?×?10?9 and 1.09?×?10?9 for recA + and recA ? cells, respectively. We analyzed 12 deletions from recA + and 10 from recA ? cells by cloning and direct sequencing. The deletions ranged in size from 5612?bp to 15142?bp for recA + and from 5428?bp to 13289 for recA ? cells. Three deletions from recA + cells and five deletions from recA ? cells were found to have occurred between short sequence repeats at the termini of the deletion, leaving one copy of the repeat in the mutant sequence. Seven deletions from recA + cells and three deletions from recA ? cells did not have repeats at their termini; in these cases, the DNA sequences that are adjacent to the deletion termini in the wild-type are characterized by short (2–4?bp) repeats. From these results, a model is presented for the generation of deletion mutations which involves formation of an asymmetric crossover mediated by repeated sequences of 2- to 4-bp.  相似文献   

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Various mutants were isolated from a microvirid (isometric single-stranded DNA) phage α3, by mutagenesis with hydroxylamine or nitrous acid. They were divided into eight complementation groups, and mainly by genetic crosses the gene alignment was determined as -A-B-C′-D-J′-F-G-H-. Except for groups C′ and J′, each defective gene product was clearly discerned in electropherograms of proteins extracted from the phage-infected suppressor-negative (Su?) Escherichia coli. Only gene A mutants abolished synthesis of the progeny replicative-form DNA (RF), whereas mutants belonging to groups B, C′, D, E, F and J′ affected RF replication at late stage, as well as synthesis of the single-stranded DNA (SS). Additional properties of several mutants are also discussed.  相似文献   

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Isolation of a multigene family containing human alpha-tubulin sequences   总被引:6,自引:0,他引:6  
The boundaries of the origin of polyoma DNA replication have been analyzed using a set of deletion mutants. The majority of these had small deletions, 5 to 30 base-pairs in size, which together removed most of the non-translated sequences of the genome. The phenotype of the mutants was characterized by analysis of infectivity, transforming ability and DNA synthesis. All mutants with reduced or abolished infectivity had corresponding defects of viral DNA synthesis. The effect of the deletion was cis-acting, since the replication of the mutants was not stimulated by the presence of wild-type DNA. Deletions causing a reduction of DNA synthesis were found at two sites. The first at the 32 base-pair inverted repeat sequence and the neighbouring A · T tract previously implicated in the initiation of DNA synthesis, and the second close to the late genes. The two sites were separated by at least 60 base-pairs of non-essential DNA. Only one mutant with a deletion at the second site was unable to express early gene functions.The mutants were constructed by linearization, shortening and recircularization of polyoma DNA inserted into the plasmid pBR322. The mutagenesis was directed at restriction endonuclease BglI or PvuII cleavage sites. The BglI-directed mutagenesis was focussed to polyoma DNA by using as a vector a derivative of pBR322 resistant to cleavage by BglI.  相似文献   

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2′-Deoxy-5′-guanosinemonosphoric acid (B) reacts with cis-[Pt(NH3)2(OH2)2]2+ in two steps to form the cis-[Pt(NH3)2B2]y+ ion. In the first step 2′-d-5′- GMPH2 reacts some ten times faster than 5′-GMPH2 does. Rate constants, ΔH#, ΔS# and ΔV# are very similar for the two bases in the second reaction. It is proposed that the product in the first step contains no water and is cis-[Pt(NH3)2B]x+ in which the nucleobase is bidentate bonding through both N(7) of guanine and an oxygen atom of the phosphate group.  相似文献   

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Methods routinely used for investigating the molecular basis of antithrombin (AT) deficiency do not detect large SERPINC1 rearrangements. Between 2000 and 2008, 86 probands suspected of having AT-inherited type I deficiency were screened for SERPINC1 mutations in our laboratory. Mutations causally linked to the deficiency were identified by sequencing analysis in 63 probands. We present here results of multiplex ligation-dependent probe amplification (MLPA) analysis performed in 22 of the 23 remaining probands, in whom sequencing had revealed no mutation. Large deletions, present at the heterozygous state, were detected in 10 patients: whole gene deletions in 5 and partial deletions removing either exon 6 (n = 2), exons 1–2 (n = 1) or exons 5–7 (n = 2) in 5 others. Exon 6 partial deletions are a 2,769-bp deletion and a 1,892-bp deletion associated with a 10-bp insertion, both having 5′ and/or 3′ breakpoints located within Alu repeat elements. In addition, we identified the 5′ breakpoint of a previously reported deletion of exons 1–2 within an extragenic Alu repeat. Distinct mutational mechanisms explaining these Alu sequence-related deletions are proposed. Overall, in this series, large deletions detected by MLPA explain almost half of otherwise unexplained type I AT-inherited deficiency cases.  相似文献   

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