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Featured researches published by Marcel J. J. Hakkaart.


Cell | 1984

Maintenance of multicopy plasmid Clo DF13 in E. coli cells: Evidence for site-specific recombination at parB

Marcel J. J. Hakkaart; PeterJ.M. van den Elzen; E. Veltkamp; H. John J. Nijkamp

Certain derivatives of copy-control mutants of plasmid Clo DF13 are not stably inherited in E. coli. These plasmids, predominantly present as multimeric DNA molecules, lack a specific region, designated parB. Here we present the nucleotide sequence of this parB region spanning 328 bp between 46% and 49% on the plasmid genome. parB is a noncoding region with extensive internal symmetry. A recA-independent, site-specific resolution process occurs between two intramolecular parB sites present in direct orientation relative to each other. A gene located in the direct vicinity of parB, gene L, is not essential for parB functioning. However, our genetic data indicate that transcription from the gene L-containing operon into parB is required. We conclude that the efficient maintenance of Clo DF13 cop derivatives containing parB is provided by resolution of mutimeric molecules. Because Clo DF13 wt and cop derivatives have a different response to the deletion of parB we postulate that two different recombination systems, a parB-dependent and a parB-independent system, operate in the efficient maintenance of Clo DF13 plasmids.


Archive | 1981

Protein H encoded by plasmid Clo DF13 involved in lysis of the bacterial host

Marcel J. J. Hakkaart; E. Veltkamp; H. John J. Nijkamp

SummaryThe gene expression of the Clo DF13 “replication region”, located between 1.8% and 12% on the plasmid genome, was studied using newly constructed Clo DF13 insertion and deletion mutants. We were able to detect a Clo DF13 specified protein of 6 kilodaltons (kd) by electrophoretic analysis of plasmid proteins, synthesized in Escherichia coli minicells, on 14–25% gradient polyacrylamide gels. The gene encoding this protein was mapped between 1.8% and 12% on the Clo DF13 genome. The nucleotide sequence of this region, as determined by Stuitje et al. (1980), revealed three open reading frames each potentially coding for a protein of 6 kd. Since these three proteins differ in amino acid composition we could distinguish which of these proteins was actually synthesized, by labeling Clo DF13 proteins with specific 14C-labeled amino acids. We found that gene H, located between 9.3% (bp 744) and 11% (bp 893), encodes the observed protein of 6 kd (denominated protein H). With respect to the subcellular localization we observed that protein H, which contains a large hydrophobic region at its C-terminal part, is predominantly present in the bacterial membrane. Although gene H is located close to the region known to be involved in Clo DF13 replication, its gene product, protein H, is not essential for the plasmid DNA replication process. The possibility of the existence of a comparable protein encoded by the related plasmid Col E1 will be discussed.


Molecular Genetics and Genomics | 1982

Maintenance of the bacteriocinogenic plasmid Clo DF13 in Escherichia coli cells. II. Specific recombination functions involved in plasmid maintenance.

Marcel J. J. Hakkaart; E. Veltkamp; H. John J. Niikamp

SummaryClo DF13 plasmids that are present at high copy-number in bacterial cells, such as Clo DF13 cop1 Ts, cop2 and cop3 are not stably inherited in the progeny, when certain plasmid DNA regions have been deleted. We have localized two Clo DF13 DNA regions involved in stable maintenance through accurate partitioning (par) namely parA, located between 71% and 72% and parB, located between 45% and 50% on the Clo DF13 genome. The instability of these cop plasmids which is accompanied by the formation of high amounts of multimeric DNA molecules, could be abolished by the insertion of transposon Tn901 into the plasmid genome. In particular that part of Tn901, that encodes for the site-specific recombination/ resolution system, appeared to be essential for stabilizing plasmid molecules. Wild-type parA- and/or parB- Clo DF13 plasmids, in contrast to cop mutants lacking these regions, are stably maintained during subsequent cell division, indicating that other (host specified) functions contribute to plasmid stability. Analysis of the role of host recombination systems in plasmid partitioning revealed that the recA function has no influence and recBC contributes only weakly to plasmid stability. With respect to the recE pathway, however, we found that in a recE proficient host all plasmids, even those lacking parA and/or parB, are stably maintained, indicating that the function of parA and parB can be replaced not only by the site-specific resolution functions of transposon Tn901, but also by the recE system. The possible role of plasmid specified and host specified functions in plasmid partitioning will be discussed.


Molecular Genetics and Genomics | 1985

Maintenance of multicopy plasmid Clo DF13

Marcel J. J. Hakkaart; Bob van Gemen; E. Veltkamp; H. John J. Nijkamp

SummaryTo elucidate the mechanisms that operate in plasmid maintenance, we analysed the stability of different combinations of Clo DF13 derivatives present in the same bacterial cell. From the data described in this paper we conclude: (i) each Clo DF13 plasmid molecule has an equal chance of colonizing daughter cells upon cell division, (ii) the Clo DF13 minimal replicon harbours functions involved in plasmid segregation and incompatibility, (iii) in the case of cells harbouring plasmid replicons which differ in size, the smaller plasmid is gradually lost from the cell population, (iv) in the case of cells habouring plasmid replicons which differ in copy number, the lower copy number plasmid is always lost from the cells population. The effect of plasmid copy number is dominant over the effect of plasmid size.


Basic life sciences | 1985

Stable Maintenance of Plasmid CLO DF13: Structural and Functional Relationships Between Replication Control, Partitioning, and Incompatibility

H. John J. Nijkamp; Bob van Gemen; Marcel J. J. Hakkaart; Arnold J. van Putten; E. Veltkamp

Nonconjugative plasmids are a very attractive model system for the study of the structural and functional aspects of stable maintenance of replicons in a growing bacterial population. Biochemical and molecular genetic studies have resulted in more insight into the genes and sites involved in the processes responsible for plasmid maintenance such as plasmid replication and its control, accurate partitioning of plasmids over daughter cells, and incompatibility between replicons.


Molecular Genetics and Genomics | 1981

Protein H encoded by plasmid Clo DF13 involved in lysis of the bacterial host: I. Localisation of the gene and identification and subcellular localisation of the gene H product

Marcel J. J. Hakkaart; Eduard Veltkamp; H. John J. Nijkamp


Molecular Genetics and Genomics | 1981

Protein H encoded by plasmid Clo DF13 involved in lysis of the bacterial host. II. Functions and regulation of synthesis of the gene H product.

Marcel J. J. Hakkaart; Eduard Veltkamp; H. John J. Nijkamp


Molecular Genetics and Genomics | 1982

Maintenance of the bacteriocinogenic plasmid Clo DF13 in Escherichia coli cells. I. Localisation and mutual interactions of four Clo DF13 incompatibility regions.

Marcel J. J. Hakkaart; John G. Wesseling; Eduard Veltkamp; H. John J. Nijkamp


Nucleic Acids Research | 1983

Structure and regulation of gene expression of a Clo DF13 plasmid DNA region involved in plasmid segregation and incompatibility

Peter J.M. van den Elzen; Marcel J. J. Hakkaart; Arnold J. van Putten; Hanneke H.B. Walters; Eduard Veltkamp; H. John J. Nijkamp


Molecular Genetics and Genomics | 1985

Maintenance of multicopy plasmid Clo DF13 III. Role of plasmid size and copy number in partitioning.

Marcel J. J. Hakkaart; Bob van Gemen; Eduard Veltkamp; H. John J. Nijkamp

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E. Veltkamp

VU University Amsterdam

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