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1 crophages, are long-lived cells, and exhibit low turnover.
2 s, possibly contributing to their relatively low turnover.
3 pted to industrial processes and suffer from low turnovers.
4 ignificant transition from high to normal or low turnover and no significant differences in volume, m
7 play a role in the maintenance of a state of low turnover and sustained expansion of the CD4 T cell p
8 vivo is limited in most organ systems by the low turnover and/or the asynchronous nature of cell cycl
11 centrations may influence the development of low-turnover bone disease and coronary artery calcificat
14 ared with high or normal turnover, bone with low turnover had microstructural abnormalities such as l
16 nt aryl group and resulted in compounds with low turnover in human hepatocytes and enhanced chemical
18 -lived, stable subpopulation of B-cells with low turnover into mature B-cells under healthy condition
19 gether, these results provide evidence for a low-turnover, mesenchymal-like sub-population in SCCs wi
25 CH(4) borylation catalysts often suffer from low turnover numbers and conversions, which is hypothesi
28 they often feature high catalyst loading and low turnover numbers relative to non-oxidative cross-cou
29 results indicate that a lack of deletion and low turnover of repetitive DNA are major contributors to
30 ation described to date are characterized by low turnovers or depend on artificially introduced, cost
32 phy characterized by osteitis fibrosa, and a low-turnover osteodystrophy characterized initially by o
33 lastic function in an adult mouse leading to low-turnover osteopenia and suggest that Runx2-I and II
34 ver relative to Amazonia, where unexpectedly low turnover over great distances suggests that populati
35 lization in the absence of copper, to form a low-turnover phosphoenzyme intermediate, with a conforma
37 ila larval NMJs, consisting of a long-lived, low-turnover presynaptic actin core that colocalizes wit
39 states: an autoinhibited basal state with a low turnover rate and a low H(+)/ATP coupling ratio and
40 rbon-fixing enzyme Rubisco, which exhibits a low turnover rate and can react with O2 instead of CO2 ,
46 e N-terminal domain of ZntA, compared to its low turnover rate, indicates that this step is not rate
47 nine epimerase, but the authors found a very low turnover rate, suggesting that this enzyme likely ha
52 th substrates, lysozyme exhibited processive low turnover rates of 20-50 s(-1) and rapid (200-400 s(-
56 3' product was consistent with the extremely low turnover under steady-state conditions as 3' product
57 ontrast to QSOX, Erv2p shows a comparatively low turnover with a range of small thiol substrates, wit