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1 g apart at what stages of differentiation autophagy plays a critical role.
2 n noninvasively retrievable biofluids (e.g., sweat), play a critical role, because they can be deployed at a large scale
3                                           Our data reveal a critical role for angiotensin II in regulating burst occurren
4           We then used unbiased proteomics and discovered a critical role for emc1 in WNT signaling.
5 ora of experimental and epidemiological evidence supports a critical role for inflammation and adaptive immunity in the o
6 th or without deficiency in adaptive immunity, indicating a critical role for innate immunity in endometrial control of C
7 f Cell Host & Microbe, Guo, Kasahara et al. (2020) reveal a critical role for pDCs in antifungal immunity.
8                    Collectively, these findings establish a critical role for Prdm12 in the anorexigenic neuron identity
9                                           Here, we report a critical role for proline catabolism in non-small cell lung c
10                     Taken together, these results suggest a critical role for skeletal muscle lamin A/C to prevent cellul
11 e examined whether the content of response feedback plays a critical role for the acquisition and long-term retention of
12 oietic growth factor and pro-inflammatory cytokine, plays a critical role in alveolar macrophage homeostasis, lung inflam
13 aracterized by two invariant histidine residues that play a critical role in catalytic activity.
14                       MAF1 is a phosphoprotein that plays a critical role in cell growth control as the central regulator
15                            Microglia and macrophages play a critical role in choroidal neovascularization (CNV) and may,
16                         It is now apparent that p53 plays a critical role in controlling immune recognition and responses
17                                           Promoters serve a critical role in establishing baseline transcriptional capaci
18 n, subfamily D, member 2) has recently been shown to have a critical role in granulopoiesis in humans, mice, and zebrafis
19                             Immune microenvironment plays a critical role in lung cancer control versus progression and m
20                       Electron-electron interactions play a critical role in many condensed matter phenomena, and it is t
21                                            Microglia play a critical role in many processes fundamental to learning and m
22 re, the thin layer of soil surrounding plant roots, plays a critical role in plant's adaptation to the environment.
23 niche that coats all non-keratinized epithelia, and plays a critical role in protecting the human body from infections.
24                                       Aurora B kinase has a critical role in regulating attachments between kinetochores
25                                     DNA methylation plays a critical role in regulating gene expression, genomic stabilit
26 eads to overproduction of urates and renal function plays a critical role in serum uric acid levels.
27              Here, we report that CD2 costimulation plays a critical role in target cell killing by freshly isolated huma
28 the principal interactions in the PTC and demonstrate their critical role in termination.
29                               The Akt/mTOR pathway played a critical role in the AML-EV-induced phenotypical and function
30 stigating human astrocytes are urgently needed, given their critical role in the central nervous system.
31 and an ozone-depleting agent, nitrous oxide (N(2)O) plays a critical role in the global climate.
32 ouse hippocampal neurons, we show here that tamalin plays a critical role in the ligand-dependent internalization of mGlu
33 this view is incorrect, and that solvation dynamics plays a critical role in the mechanism.
34 oscopy data and explain how periodic microstructures play a critical role in the midinfrared.
35               DNA-dependent protein kinase (DNA-PK) plays a critical role in the non-homologous end joining (NHEJ) repair
36 a susceptibility and reinforces the concept that RA plays a critical role in the pathophysiology of arrhythmogenesis.
37 se events have been linked to flash droughts and can play a critical role in the spread of human ignited wildfires.
38                                        Hence, Dot1l plays a critical role in the thermogenic program and may present as a
39 nsing adaptor STING (stimulator of interferon genes) play a critical role in vascular inflammation and destruction.
40 oblasts by transforming growth factor-beta (TGFbeta) play a critical role in wound healing.
41                         Mutagenesis studies demonstrate the critical role of consecutive aromatic residues at the tip of
42                          In summary, our results identify a critical role of CXCR6 in the development of inflammation and
43                                    These findings support a critical role of DBP in migraine susceptibility and shared bi
44  ultrafast transient absorption spectroscopy, elucidate the critical role of electron transfer (ET) from CdS NRs to MmOGO
45  will be achieved only by recognizing and responding to the critical role of fire.
46              Additionally, our work begins to elucidate the critical role of isotype for an influenza A monoclonal antibo
47  the effects of climate change on migratory species and the critical role of plant phenology in mediating the ability of
48                              Together, these data support a critical role of SIRT1 in inflammation and insulin resistance
49 her, these data provide definitive genetic evidence for the critical role of the Tarp F-actin-binding domains in host cel
50                                    These findings support a critical role of Tregs in the pathogenesis of persistence ind