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1.
Reconstitution of RecBC DNase activity from purified Escherichia coli RecB and RecC proteins 总被引:8,自引:0,他引:8
I D Hickson C N Robson K E Atkinson L Hutton P T Emmerson 《The Journal of biological chemistry》1985,260(2):1224-1229
The Escherichia coli RecB protein, normally synthesized in low amounts, has been amplified by linkage of the recB gene to the phage lambda leftward promoter in an expression plasmid. From strains harboring this plasmid, RecB protein has been purified to homogeneity by a simple procedure which includes affinity chromatography on a column of RecC protein bound to agarose. The purified RecB protein has DNA-dependent ATPase activity but no exonuclease activity. RecC protein alone has neither ATPase nor exonuclease activity. However, when combined together, the RecB and RecC proteins show the ATP-dependent double-stranded exonuclease properties characteristic of the RecBC DNase. 相似文献
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Nucleotide pool sizes, DNA polymerizing enzymes, and DNA synthesis were studied in mouse thymocytes over a 24-hr period of culture in Marbrook chambers. The initial rate of cell division was high with an average mitotic index of 1.6%/hr for 12 hr, followed by a decline to 0.14%/hr at 24 hr. The decline in DNA synthesis was not closely correlated with the activities of DNA-dependent DNA polymerases-α or -β or with the activity of terminal deoxynucleotidyl transferase. The amounts of several ribo- and deoxyribonucleotides per thymocyte were measured using high performance liquid chromatography and DNA polymerase. Pool sizes of ATP, GTP, dATP, and dTTP were less than 10% of pool sizes commonly observed in mammalian cells. The rates of DNA and RNA synthesis in thymocytes may be critically affected by minor changes in the availability of nucleotides. Cultures of thymocytes serve as useful experimental systems for investigation of nucleotide and nucleic acid metabolism during lymphoid differentiation. 相似文献
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Annalisa Cavallini Suzanne Brewerton Amanda Bell Samantha Sargent Sarah Glover Clare Hardy Roger Moore John Calley Devaki Ramachandran Michael Poidinger Eric Karran Peter Davies Michael Hutton Philip Szekeres Suchira Bose 《The Journal of biological chemistry》2013,288(32):23331-23347
Neurofibrillary tangles, one of the hallmarks of Alzheimer disease (AD), are composed of paired helical filaments of abnormally hyperphosphorylated tau. The accumulation of these proteinaceous aggregates in AD correlates with synaptic loss and severity of dementia. Identifying the kinases involved in the pathological phosphorylation of tau may identify novel targets for AD. We used an unbiased approach to study the effect of 352 human kinases on their ability to phosphorylate tau at epitopes associated with AD. The kinases were overexpressed together with the longest form of human tau in human neuroblastoma cells. Levels of total and phosphorylated tau (epitopes Ser(P)-202, Thr(P)-231, Ser(P)-235, and Ser(P)-396/404) were measured in cell lysates using AlphaScreen assays. GSK3α, GSK3β, and MAPK13 were found to be the most active tau kinases, phosphorylating tau at all four epitopes. We further dissected the effects of GSK3α and GSK3β using pharmacological and genetic tools in hTau primary cortical neurons. Pathway analysis of the kinases identified in the screen suggested mechanisms for regulation of total tau levels and tau phosphorylation; for example, kinases that affect total tau levels do so by inhibition or activation of translation. A network fishing approach with the kinase hits identified other key molecules putatively involved in tau phosphorylation pathways, including the G-protein signaling through the Ras family of GTPases (MAPK family) pathway. The findings identify novel tau kinases and novel pathways that may be relevant for AD and other tauopathies. 相似文献
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Isolation and sequence analysis of cDNA for rat carboxypeptidase E [EC 3.4.17.10], a neuropeptide processing enzyme 总被引:5,自引:0,他引:5
L D Fricker J P Adelman J Douglass R C Thompson R P von Strandmann J Hutton 《Molecular endocrinology (Baltimore, Md.)》1989,3(4):666-673
Carboxypeptidase E (CPE) is the carboxypeptidase B-like enzyme associated with the biosynthesis of numerous peptide hormones and neurotransmitters. This enzyme has been previously purified to homogeneity from bovine tissues, and cDNA clones (non-full length) isolated from a bovine pituitary cDNA library. In the present study, cDNA encoding full-length rat CPE has been isolated and sequenced. Both the nucleotide and amino acid sequences of rat CPE show substantial homology with the bovine sequences. The bovine and rat nucleotide sequences are homologous within the entire coding region, as well as within several portions of the 3'-untranslated region. The predicted amino acid sequence of rat CPE is greater than 90% homologous with the bovine enzyme. Northern blot analyses indicate a single species of CPE mRNA approximately 2100 nucleotides in length to be present in many neural and endocrine tissues. High levels of CPE mRNA are present in rat hypothalamus, hippocampus, midbrain, striatum, and cerebral cortex; and moderate levels are present in the brain stem, cerebellum, heart, adrenal, and eye. Low levels are detected in testis and duodenum, but not in liver or thymus. This tissue-specific expression of CPE mRNA is consistent with the proposed role for this enzyme in the production of numerous peptide hormones and neurotransmitters. 相似文献