scholarly journals On Optimizing Signaling Efficiency of Retransmissions for Voice LTE

Author(s):  
Chia-An Hsu ◽  
Kate Ching-Ju Lin ◽  
Yi Ren ◽  
Yu-Chee Tseng
Keyword(s):  
2004 ◽  
Vol 279 (30) ◽  
pp. 31098-31104 ◽  
Author(s):  
Shui-Lin Niu ◽  
Drake C. Mitchell ◽  
Sun-Young Lim ◽  
Zhi-Ming Wen ◽  
Hee-Yong Kim ◽  
...  

2019 ◽  
Vol 30 (17) ◽  
pp. 2331-2347 ◽  
Author(s):  
Timothy Travers ◽  
William K. Kanagy ◽  
Rachael A. Mansbach ◽  
Elton Jhamba ◽  
Cedric Cleyrat ◽  
...  

Syk/Zap70 family kinases are essential for signaling via multichain immune-recognition receptors such as tetrameric (αβγ2) FcεRI. Syk activation is generally attributed to cis binding of its tandem SH2 domains to dual phosphotyrosines within FcεRIγ-ITAMs (immunoreceptor tyrosine-based activation motifs). However, the mechanistic details of Syk docking on γ homodimers are unresolved. Here, we estimate that multivalent interactions for WT Syk improve cis-oriented binding by three orders of magnitude. We applied molecular dynamics (MD), hybrid MD/worm-like chain polymer modeling, and live cell imaging to evaluate relative binding and signaling output for all possible cis and trans Syk–FcεRIγ configurations. Syk binding is likely modulated during signaling by autophosphorylation on Y130 in interdomain A, since a Y130E phosphomimetic form of Syk is predicted to lead to reduced helicity of interdomain A and alter Syk’s bias for cis binding. Experiments in reconstituted γ-KO cells, whose γ subunits are linked by disulfide bonds, as well as in cells expressing monomeric ITAM or hemITAM γ-chimeras, support model predictions that short distances between γ ITAM pairs are required for trans docking. We propose that the full range of docking configurations improves signaling efficiency by expanding the combinatorial possibilities for Syk recruitment, particularly under conditions of incomplete ITAM phosphorylation.


2016 ◽  
Vol 110 (3) ◽  
pp. 372a
Author(s):  
Kimberly Sam ◽  
Minqi Wang ◽  
Yuan-Zhi Liu ◽  
Paritosh Pande ◽  
Stephen A. Boppart ◽  
...  

Author(s):  
Ricarda M. L. Berger ◽  
Johann M. Weck ◽  
Simon M. Kempe ◽  
Tim Liedl ◽  
Joachim O. Rädler ◽  
...  

AbstractNanoscale probes with fine-tunable properties are of key interest in cell biology and nanomedicine to elucidate and eventually control signaling processes in cells. A critical, still challenging issue is to conjugate these probes with molecules in a number- and spatially-controlled manner. Here, DNA origami-based nanoagents as nanometer precise scaffolds presenting Fas ligand (FasL) in well-defined arrangements to cells are reported. These nanoagents activate receptor molecules in the plasma membrane initiating apoptosis signaling in cells. Signaling for apoptosis depends sensitively on FasL geometry: fastest time-to-death kinetics are obtained for FasL nanoagents representing predicted structure models of hexagonal receptor ordering with 10 nm inter-molecular spacing. Slower kinetics are observed for one to two FasL on DNA origami or FasL coupled with higher flexibility. Nanoagents with FasL arranged in hexagons with small (5 nm) and large (30 nm) spacing impede signal transduction. Moreover, for predicted hexagonal FasL nanoagents, signaling efficiency is faster and 100× higher compared to naturally occurring soluble FasL. Incubation of the FasL-origami nanoagent in solution exhibited an EC50 value of only 90 pM. These studies present DNA origami as versatile signaling platforms to probe the significance of molecular number and nanoscale ordering for signal initiation in cells.


2018 ◽  
Author(s):  
Khaled Moustafa

Thanks to their distinctive mode of action in a coordinated switch-like way, their multi-tiered signaling cascades and their involvement in cell responses to multiple internal and external stimuli, MAP kinases offer a remarkable possibility to be assembled into what we can call "MAPK transgenic circuits" to improve cell functions. Such circuit could be used to enhance cell signaling efficiency and boost cell functions for several purposes in plant biotechnology, medicine, and pharmaceutical industry.


2016 ◽  
Vol 6 (1) ◽  
Author(s):  
Tamás Kovács ◽  
Gyula Batta ◽  
Tímea Hajdu ◽  
Ágnes Szabó ◽  
Tímea Váradi ◽  
...  

2015 ◽  
Vol 108 (2) ◽  
pp. 526a
Author(s):  
Xin Hui ◽  
Mike Bonny ◽  
Lars Kaestner ◽  
Karsten Kruse ◽  
Peter Lipp

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