Dissecting the effects of cooperativity on the stabilisation of a de novo designed three stranded anti-parallel β-sheet

1997 ◽  
pp. 1955 ◽  
Author(s):  
Gary J. Sharman
Keyword(s):  
De Novo ◽  
Structure ◽  
2008 ◽  
Vol 16 (12) ◽  
pp. 1799-1805 ◽  
Author(s):  
Xiaozhen Hu ◽  
Huanchen Wang ◽  
Hengming Ke ◽  
Brian Kuhlman
Keyword(s):  
De Novo ◽  

2022 ◽  
Vol 23 (2) ◽  
pp. 701
Author(s):  
Yuki Ito ◽  
Takuya Araki ◽  
Shota Shiga ◽  
Hiroyuki Konno ◽  
Koki Makabe

Top7 is a de novo designed protein whose amino acid sequence has no evolutional trace. Such a property makes Top7 a suitable scaffold for studying the pure nature of protein and protein engineering applications. To use Top7 as an engineering scaffold, we initially attempted structure determination and found that crystals of our construct, which lacked the terminal hexahistidine tag, showed weak diffraction in X-ray structure determination. Thus, we decided to introduce surface residue mutations to facilitate crystal structure determination. The resulting surface mutants, Top7sm1 and Top7sm2, crystallized easily and diffracted to the resolution around 1.7 Å. Despite the improved data, we could not finalize the structures due to high R values. Although we could not identify the origin of the high R values of the surface mutants, we found that all the structures shared common packing architecture with consecutive intermolecular β-sheet formation aligned in one direction. Thus, we mutated the intermolecular interface to disrupt the intermolecular β-sheet formation, expecting to form a new crystal packing. The resulting mutant, Top7sm2-I68R, formed new crystal packing interactions as intended and diffracted to the resolution of 1.4 Å. The surface mutations contributed to crystal packing and high resolution. We finalized the structure model with the R/Rfree values of 0.20/0.24. Top7sm2-I68R can be a useful model protein due to its convenient structure determination.


2015 ◽  
Vol 112 (32) ◽  
pp. 9816-9821 ◽  
Author(s):  
Katelyn Nagy-Smith ◽  
Eric Moore ◽  
Joel Schneider ◽  
Robert Tycko

Most, if not all, peptide- and protein-based hydrogels formed by self-assembly can be characterized as kinetically trapped 3D networks of fibrils. The propensity of disease-associated amyloid-forming peptides and proteins to assemble into polymorphic fibrils suggests that cross-β fibrils comprising hydrogels may also be polymorphic. We use solid-state NMR to determine the molecular and supramolecular structure of MAX1, a de novo designed gel-forming peptide, in its fibrillar state. We find that MAX1 adopts a β-hairpin conformation and self-assembles with high fidelity into a double-layered cross-β structure. Hairpins assemble with an in-register Syn orientation within each β-sheet layer and with an Anti orientation between layers. Surprisingly, although the MAX1 fibril network is kinetically trapped, solid-state NMR data show that fibrils within this network are monomorphic and most likely represent the thermodynamic ground state. Intermolecular interactions not available in alternative structural arrangements apparently dictate this monomorphic behavior.


2018 ◽  
Vol 25 (11) ◽  
pp. 1028-1034 ◽  
Author(s):  
Enrique Marcos ◽  
Tamuka M. Chidyausiku ◽  
Andrew C. McShan ◽  
Thomas Evangelidis ◽  
Santrupti Nerli ◽  
...  

2020 ◽  
Vol 11 ◽  
Author(s):  
Shiqi He ◽  
Zhanyi Yang ◽  
Weikang Yu ◽  
Jiawei Li ◽  
Zhongyu Li ◽  
...  

Amphipathicity has traditionally been considered to be essential for the de novo design or systematic optimization of antimicrobial peptides (AMPs). However, the current research methods to study the relationship between amphiphilicity and antimicrobial activity are inappropriate, because the key parameters (hydrophobicity, positive charge, etc.) and secondary structure of AMPs are changed. To systematically and accurately study the effects of amphiphilicity on antimicrobial properties of AMPs, we designed parallel series of AMPs with a different order of amino acids in a sequence composed only of Arg and either Trp (WR series) or Leu (LR series), under conditions in which other vital parameters were fixed. Furthermore, based on the WR and LR peptides that can form stable amphiphilic β-sheet structures in the anionic membrane-mimetic environment, we found that high β-sheet amphipathic was accompanied by strong antimicrobial activity. Of such peptides, W5 ([RW]4W) and L5 ([RL]4L) with a nicely amphipathic β-sheet structure possessed the optimal therapeutic index. W5 and L5 also exhibited high stability in vitro and a potent membrane-disruptive mechanism. These results suggest that the alternate arrangement of hydrophobic and hydrophilic residues to form a stable amphipathic β-sheet structure is an essential factor that significantly affects the antimicrobial properties.


2021 ◽  
Vol 7 (36) ◽  
Author(s):  
Xingqing Xiao ◽  
Yiming Wang ◽  
Dillon T. Seroski ◽  
Kong M. Wong ◽  
Renjie Liu ◽  
...  
Keyword(s):  
De Novo ◽  

Author(s):  
Bikash R. Sahoo ◽  
Christopher L. Souders ◽  
Magdalena Ivanova ◽  
Zhou Deng ◽  
Takahiro W. Nakayama ◽  
...  

AbstractHuman amylin is linked to type-2 diabetes and forms structurally heterogeneous amyloids that are pathologically relevant. Therefore, understanding the fundamental forces governing the formation of heterogeneous aggregates is important. Here, using derivatives (SMAQA+/SMAEA−) of styrene-maleic-acid (SMA) copolymer (∼2.2kDa), we demonstrate the quick formation (∼ in minutes) of amylin globulomers and fibers. High-speed AFM tracked the quick formation of de novo globular amylin oligomers and arrestment of fibrillation by SMAQA, whereas SMAEA accelerates amylin fibrillation. This observation is further supported by DOSY and STD NMR experiments. CD results show that SMAQA or SMAEA binding generates α-helix or β-sheet rich amylin structures, respectively. Atomistic insights are revealed by 2D NMR and microseconds all-atom MD simulation. Together, this study highlights the importance of charge-charge interaction in tuning the fibrillation pathways of amylin that could be of therapeutic interest.Graphical abstract


2001 ◽  
pp. 2660-2661 ◽  
Author(s):  
Janani Venkatraman ◽  
G. A. Naganagowda ◽  
R. Sudha ◽  
Padmanabhan Balaram

2013 ◽  
Vol 49 (58) ◽  
pp. 6561 ◽  
Author(s):  
Yoav Raz ◽  
Boris Rubinov ◽  
Maayan Matmor ◽  
Hanna Rapaport ◽  
Gonen Ashkenasy ◽  
...  
Keyword(s):  
De Novo ◽  

2020 ◽  
Vol 118 (3) ◽  
pp. 474a
Author(s):  
Keisuke Shimizu ◽  
Shungo Sakashita ◽  
Yoshio Hamada ◽  
Kenji Usui ◽  
Batsaikhan Mijiddorj ◽  
...  
Keyword(s):  
De Novo ◽  

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