A pivotal role for reductive methylation in thede novocrystallization of a ternary complex composed ofYersinia pestisvirulence factors YopN, SycN and YscB

2004 ◽  
Vol 60 (11) ◽  
pp. 1981-1986 ◽  
Author(s):  
Florian D. Schubot ◽  
David S. Waugh
2011 ◽  
Vol 286 (22) ◽  
pp. 19744-19757 ◽  
Author(s):  
Young H. Kang ◽  
Chi Hoon Park ◽  
Tae-Sung Kim ◽  
Nak-Kyun Soung ◽  
Jeong K. Bang ◽  
...  

Mammalian polo-like kinase 1 (Plk1) plays a pivotal role during M-phase progression. Plk1 localizes to specific subcellular structures through the targeting activity of the C-terminal polo-box domain (PBD). Disruption of the PBD function results in improper bipolar spindle formation, chromosome missegregation, and cytokinesis defect that ultimately lead to the generation of aneuploidy. It has been shown that Plk1 recruits itself to centromeres by phosphorylating and binding to a centromere scaffold, PBIP1 (also called MLF1IP and CENP-U[50]) through its PBD. However, how PBIP1 itself is targeted to centromeres and what roles it plays in the regulation of Plk1-dependent mitotic events remain unknown. Here, we demonstrated that PBIP1 directly interacts with CENP-Q, and this interaction was mutually required not only for their stability but also for their centromere localization. Plk1 did not appear to interact with CENP-Q directly. However, Plk1 formed a ternary complex with PBIP1 and CENP-Q through a self-generated p-T78 motif on PBIP1. This complex formation was central for Plk1-dependent phosphorylation of PBIP1-bound CENP-Q and delocalization of the PBIP1-CENP-Q complex from mitotic centromeres. This study reveals a unique mechanism of how PBIP1 mediates Plk1-dependent phosphorylation event onto a third protein, and provides new insights into the mechanism of how Plk1 and its recruitment scaffold, PBIP1-CENP-Q complex, are localized to and delocalized from centromeres.


Punctuation plays a pivotal role in enhancing the comprehensibility of a text. It not only abolishes ambiguity from the text but also adorns the individual style of the author. This paper analyses Bacon’s essay “Envy” evaluating the aberrant use of punctuation to understand its impact on the holistic comprehension of the essay. Bacon has deviated in some punctuation marks in different situations. Most deviations occur in the use of the comma and the semicolon. The least deviations occur in the use of the period. Two explanations may be inferred from the analysis: First, what seems to be deviant in this regard was normal in his time; second, he deviates on purpose to make the long, complex sentence clear and easy for the reader.


Diabetes ◽  
2020 ◽  
Vol 69 (Supplement 1) ◽  
pp. 1853-P
Author(s):  
QIONG L. ZHOU ◽  
SHOAIB KHAN ◽  
MICHAEL RIGOR ◽  
INDEEVAR BEERAM ◽  
ZHEN Y. JIANG

Author(s):  
Parth Sarthi Sen Gupta ◽  
Satyaranjan Biswal ◽  
Saroj Kumar Panda ◽  
Abhik Kumar Ray ◽  
Malay Kumar Rana

<p>While an FDA approved drug Ivermectin was reported to dramatically reduce the cell line of SARS-CoV-2 by ~5000 folds within 48 hours, the precise mechanism of action and the COVID-19 molecular target involved in interaction with this in-vitro effective drug are unknown yet. Among 12 different COVID-19 targets studied here, the RNA dependent RNA polymerase (RdRp) with RNA and Helicase NCB site show the strongest affinity to Ivermectin amounting -10.4 kcal/mol and -9.6 kcal/mol, respectively. Molecular dynamics of corresponding protein-drug complexes reveals that the drug bound state of RdRp with RNA has better structural stability than the Helicase NCB site, with MM/PBSA free energy of -135.2 kJ/mol, almost twice that of Helicase (-76.6 kJ/mol). The selectivity of Ivermectin to RdRp is triggered by a cooperative interaction of RNA-RdRp by ternary complex formation. Identification of the target and its interaction profile with Ivermectin can lead to more powerful drug designs for COVID-19 and experimental exploration. </p>


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