Bacterial DNA, DNA polymerase, and DNA helicases / Walter D. Knudsen and Sam S. Bruns, editors.
Material type:
TextLanguage: English Series: Genetics--research and issues seriesPublication details: New York : Nova Science, c2010.Description: xiv, 456 p. : ill. (some col.) ; 27 cmISBN: - 9781607410942 (hc)
- 160741094X
- 572.8/293 22
- QH434 .B333 2010
- 2010 F-156
- QW 51
| Item type | Current library | Call number | Copy number | Status | Date due | Barcode | |
|---|---|---|---|---|---|---|---|
წიგნები / Books
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ცენტრალური ბიბლიოთეკა / Central library ტექნიკური დარ. / Techn. hall | 577.213 / 2 (Browse shelf(Opens below)) | K - 9247 | Available | 2016-3036 |
Price. 45 L.
Includes bibliographical references and index.
Codon and codon pairs usage in bacteria / Boris I. Bachvarov, Kiril T. Kirilov, Ivan G. Ivanov -- Maillard reaction and spontaneous mutagenesis in Escherichia coli / Roumyana Mironova ... [et al.] -- Nucleoid architecture and dynamics in bacteria / Ryosuke L. Ohniwa ... [et al.] -- Genome reduction in Bacillus subtilis and enhanced productivities of recombinant proteins / Yasushi Kageyama ... [et al.] -- Molecular detection and characterization of food and waterborne viruses / Alain Houde ... [et al.] -- hTERT in cancer chemotherapy : a novel target of histone deacetylase inhibitors / Jun Murakami ... [et al.] -- Dynamics of DNA polymerase / Ping Xie -- Inhibiting viral DNA polymerase for HBV therapy / Min Jiang, Yuanhao Li -- Modeling DNA translocation and unwinding by helicase RecG / Ping Xie -- De novo DNA synthesis by DNA polymerase / Xingguo Liang, Tomohiro Kato, Hiroyuki Asanuma -- Bacteriophage [phi]29 DNA polymerase : an outstanding replicase / Miguel de Vega, Margarita Salas -- Bacterial replicative DNA helicases / Subhasis B. Biswas ... [et al.] -- Effect of substrate traps on hepatitis C virus NS3 helicase catalyzed DNA unwinding : evidence for enzyme catalyzed strand exchange / Ryan S. Rypma, Angela M.I. Lam, David N. Frick -- Discovery of orphan helicases and deorphanization by genome-wide analyses in two model organisms, S. cerevisiae and C. elegans / Toshihiko Eki, Fumio Hanaoka.
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