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1 2 region, suggesting that this region may play a regulatory role.
2 the signaling intermediaries (Smads), we demonstrated a key role for ALK2 in the BMP9/BMP10-induced surface expression of
4 mode of Hsp70 inactivation by AMPylation and point toward a role for protein AMPylation in the regulation of cellular pro
8 rotein (RIP) homotypic interaction motifs (RHIM) play a key role in cell death and inflammatory signalling(1-3).
9 essors and mutants, provided insights into their regulatory role in defined modules of the JA network.
10 nduces changes in the filter conformation, which play a key role in defining both selectivity and permeation.
13 Behavioral studies suggest that vestibular signals play a role in dissociating object motion and self-motion, and recen
15 s function in caveolae biogenesis, Cavin-2 plays a critical role in endothelial cell maintenance and function by regulati
17 f tumor cells to cytotoxic treatments can play an important role in individualized cancer medicine.
20 ent understanding of placental vitamin D metabolism and its role in modulating maternal circulating vitamin D metabolites
21 conclude that nucleoporins play an unanticipated regulatory role in NEBD, by recruiting PLK-1 to the NE thereby facilitat
22 Thus, in addition to their canonical role in protein recycling, REs also mediate forward secretory
23 nd there are conflicting reports about whether it plays any role in regulating viral lytic reactivation.
24 Staphylococcus aureus plays an important role in sepsis, pneumonia, wound infections, and cystic fibro
25 the Xenopus system, we show that RARbeta2 plays a specific role in somite number and size, restriction of the presomitic
26 A proteins are essential cofactors of COP1, but their exact role in the COP1/SPA complex is thus far unknown.
27 udies demonstrate that the glycosylation plays an essential role in the flagellar assembly and motility of T. denticola.
28 etection, the dialogue between these two areas could play a role in the regulation of emotions and in procedural motor an
30 it varies across space and time and revealing the essential role it played in maintaining stability and functionality wit
33 ic alteration of DT caliber and resistance analogous to the role of blood vessel tone in regulating blood flow.
35 ion of inflammation mediators and shedding new light on the role of fibroblasts in chronic inflammation.
36 chrony in key nonverbal social behaviors, and highlight the role of human attachment in providing a template for two-brai
37 netics of LOX-1; describes existing evidence supporting the role of LOX-1 in atherogenesis and its major complication, my
38 These results provide a foundation for understanding the role of multiple regulatory factors in modulating Fshb gene a
40 Together, our results provide novel insight into the role of Nt17 post-translational modifications in regulating t
41 To test the non-tumor cell microenvironment role of RAGE, we performed syngeneic studies with orthotopica
43 sed to be beneficial for its catalytic performance, but the role of sulfur vacancies and the mechanism determining the re
46 ated by endosomal recycling and vacuolar targeting, but the role of vacuole-related proteins in BR receptor dynamics and
49 ors explaining such similarities are still debated, and the role played by most organismal traits and their intraspecific
50 function of these FASTK proteins and discuss the individual role that each has in mitochondrial RNA biology.
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