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Aurora B regulates cytokinesis timing and plays a central role in the abscission checkpoint. Cellular events monitored by this checkpoint are beginning to be elucidated, yet signaling pathways upstream of Aurora B in this context remain poorly understood. Here we reveal a new connection between postmitotic genome surveillance and cytokinetic abscission. Underreplicated DNA lesions are known to be transmitted through mitosis and protected in newly formed nuclei by recruitment of 53BP1 and other proteins until repair takes place. We find that this genome surveillance initiates before completion of cytokinesis. Elevating replication stress increases this postmitotic process and delays cytokinetic abscission by keeping the abscission checkpoint active. We further find that ATR activity in midbody-stage cells links postmitotic genome surveillance to abscission timing and that Chk1 integrates this and other signals upstream of Aurora B to regulate when the final step in the physical separation of daughter cells occurs. 相似文献
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L H Moehario L Wang R J Devenish I R Mackay S Marzuki 《Biochimica et biophysica acta》1991,1097(2):128-132
A major issue in the study of the pathogenesis of primary biliary cirrhosis is whether the E2 subunit of the pyruvate dehydrogenase complex (PDH-E2), the major autoantigen in the disease, exists as a tissue-specific isoform. cDNA clones spanning a segment of the 3'-catalytic region of PDH-E2 (nt 1158-1361) have been isolated from human kidney, placenta and bile epithelium cells. Nucleotide sequence analysis of the clones showed differences consistent with the presence of normal variants of PDH-E2 in the human population. However, the existence of tissue-specific isoforms of PDH-E2 cannot yet be discounted. 相似文献
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The plasmids of Deinococcus spp. and the cloning and restriction mapping of the D. radiophilus plasmid pUE1 总被引:2,自引:0,他引:2
Plasmids were found in strains representing all four species of the genus Deinococcus viz. D. radiodurans, D. radiopugnans, D. radiophilus and D. proteolyticus but were not found in the most intensively-investigated strain of the genus, D. radiodurans R1. Their sizes were calculated from electron micrographs. D. radiophilus yielded three size classes of plasmid while D. radiodurans Sark, D. proteolyticus and D. radiopugnans each yielded two. Attempts to cure D. radiophilus and D. radiodurans Sark of any of their plasmids, using a variety of methods, were unsuccessful. A 10.8 kbase pair (kb) plasmid from D. radiophilus, pUE1, was cloned into the PstI site of pAT153 and propagated in Escherichia coli HB101. The recombinant plasmid, pUE109 was subjected to single and double digestion with various restriction endonucleases and its restriction map constructed. The resistance of E. coli HB101 to ultraviolet radiation was not increased when pUE109 was introduced into it. Attempts to transform D. radiodurans with pUE109 failed to detect tetracycline-resistant transformants. 相似文献
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Rosaleen J. Anderson Brian P. Clark Chandralal M. Hewage A. Ian Smith Simon P. Mackay 《Letters in Peptide Science》1999,6(5-6):395-402
The enzyme thimet oligopeptidase (EC3.4.24.15, EP24.15) is responsible for the hydrolysis of a number of neuropeptides. Despite much research examining its substrate specificity, little is known about the conformational requirements of its active site. We have used 1D 1H and 2D TOCSY NMR experiments to assign the proton resonances of the EP24.15 inhibitor, N-[1-(R,S)-carboxy-3-phenylpropyl]-Ala-Ala-Tyr-p-aminobenzoate (cFP), and 2D ROESY NMR to investigate whether cFP exhibits any conformational preferences in CD3OD and in aqueous CD3OD. Molecular modelling of charged cFP in the gaseous phase generated a number of conformations that were consistent with the NMR data obtained in CD3OD. Analogous modelling on the uncharged cFP did not result in conformations consistent with any of the NMR data, but did suggest that, under non-polar conditions, cFP could adopt a hairpin conformation which would allow simultaneous coordination of the two carboxyl groups of cFP to the zinc ion in the active site of EP24.15. 相似文献
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A. D. Mackay G. M. Scott S. L. Cohen E. Stonehill 《BMJ (Clinical research ed.)》1995,310(6979):598-599
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