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Dive into the research topics where Z. Maneliene is active.

Publication


Featured researches published by Z. Maneliene.


Journal of Bacteriology | 2001

Specificities of Eleven Different DNA Methyltransferases of Helicobacter pylori Strain 26695

Jolanta Vitkute; Kornelijus Stankevicius; Giedre Tamulaitiene; Z. Maneliene; Albertas Timinskas; Douglas E. Berg; Arvydas Janulaitis

Methyltransferases (MTases) of procaryotes affect general cellular processes such as mismatch repair, regulation of transcription, replication, and transposition, and in some cases may be essential for viability. As components of restriction-modification systems, they contribute to bacterial genetic diversity. The genome of Helicobacter pylori strain 26695 contains 25 open reading frames encoding putative DNA MTases. To assess which MTase genes are active, strain 26695 genomic DNA was tested for cleavage by 147 restriction endonucleases; 24 were found that did not cleave this DNA. The specificities of 11 expressed MTases and the genes encoding them were identified from this restriction data, combined with the known sensitivities of restriction endonucleases to specific DNA modification, homology searches, gene cloning and genomic mapping of the methylated bases m(4)C, m(5)C, and m(6)A.


Nucleic Acids Research | 1992

Purification and properties of the Eco57I restriction endonuclease and methylase--prototypes of a new class (type IV).

Arvydas Janulaitis; M. Petrusyte; Z. Maneliene; Saulius Klimašauskas; Viktoras Butkus


Nucleic Acids Research | 1987

Cleavage of methylated CCCGGG sequences containing either N4-methylcytosine or 5-methylcytosine with MspI, HpaII, SmaI, XmaI and Cfr9I restriction endonucleases.

Viktoras Butkus; L. Petrauskiene; Z. Maneliene; Saulius Klimašauskas; V. Laučys; Arvydas Janulaitis


Journal of Molecular Biology | 2003

Engineering of Restriction Endonucleases: Using Methylation Activity of the Bifunctional Endonuclease Eco57I to Select the Mutant with a Novel Sequence Specificity

Renata Rimseliene; Z. Maneliene; Arvydas Lubys; Arvydas Janulaitis


Nucleic Acids Research | 1997

BplI, a new BcgI-like restriction endonuclease, which recognizes a symmetric sequence.

J. Vitkute; Z. Maneliene; M. Petrusyte; Arvydas Janulaitis


Nucleic Acids Research | 2001

Characterization of BseMII, a new type IV restriction–modification system, which recognizes the pentanucleotide sequence 5′-CTCAG(N)10/8↓

Sonata Jurenaite-Urbanaviciene; Ruta Kazlauskiene; Virginija Urbelyte; Z. Maneliene; M. Petrusyte; Arvydas Lubys; Arvydas Janulaitis


Nucleic Acids Research | 1992

Alw26I, Eco31I and Esp3I--type IIs methyltransferases modifying cytosine and adenine in complementary strands of the target DNA.

J. Bitinaite; Z. Maneliene; S. Menkevicius; Saulius Klimašauskas; Viktoras Butkus; Arvydas Janulaitis


Nucleic Acids Research | 1987

Synthesis and physical characterization of DNA fragments containing N4-methylcytosine and 5-methylcytosine.

Viktoras Butkus; Saulius Klimašauskas; L. Petrauslriené; Z. Maneliene; Arvydas Janulaitis; L.E. Minchenkova; A.K. Schyolkina


Nucleic Acids Research | 1998

BfiI, a restriction endonuclease from Bacillus firmus S8120, which recognizes the novel non-palindromic sequence 5′-ACTGGG(N)5/4-3′

J. Vitkute; Z. Maneliene; M. Petrusyte; Arvydas Janulaitis


Nucleic Acids Research | 1990

M.Smal is an N4-methylcytosine specific DNA-methylase

Saulius Klimašauskas; Dana Steponavičiene; Z. Maneliene; M. Petrusyte; Viktoras Butkus; Arvydas Janulaitis

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Arvydas Janulaitis

Washington University in St. Louis

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Arvydas Lubys

Thermo Fisher Scientific

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Albertas Timinskas

Washington University in St. Louis

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Arvydas Janulaitis

Washington University in St. Louis

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Giedre Tamulaitiene

Washington University in St. Louis

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Jolanta Vitkute

Washington University in St. Louis

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Kornelijus Stankevicius

Washington University in St. Louis

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