Zobrazeno 1 - 10
of 28
pro vyhledávání: '"Rajkumar Misra"'
Autor:
Moran Aviv, Dana Cohen-Gerassi, Asuka A. Orr, Rajkumar Misra, Zohar A. Arnon, Linda J. W. Shimon, Yosi Shacham-Diamand, Phanourios Tamamis, Lihi Adler-Abramovich
Publikováno v:
International Journal of Molecular Sciences, Vol 22, Iss 17, p 9634 (2021)
Supramolecular hydrogels formed by the self-assembly of amino-acid based gelators are receiving increasing attention from the fields of biomedicine and material science. Self-assembled systems exhibit well-ordered functional architectures and unique
Externí odkaz:
https://doaj.org/article/d26d0dde8dc44b138920d2928b19bb75
Autor:
Rajkumar Misra, Francesca Netti, Gil Koren, Yoav Dan, Priyadarshi Chakraborty, Sidney R. Cohen, Linda J. W. Shimon, Roy Beck, Lihi Adler-Abramovich
Publikováno v:
Polymer Chemistry. 13:6223-6228
The spontaneous self-association of an amphiphilic α, β-hybrid peptide into supramolecular fibers and atomic details of the fibrillar assembly are reported.
Autor:
Nikhil Bajpayee, Thangavel Vijayakanth, Sigal Rencus‐Lazar, Sneha Dasgupta, Aamod V. Desai, Rahul Jain, Ehud Gazit, Rajkumar Misra
Publikováno v:
Angewandte Chemie International Edition
Flexible and biocompatible metal peptide frameworks (MPFs) derived from short and ultra-short peptides have been explored for the storage of greenhouse gases, molecular recognition, and chiral transformations. In addition to short flexible peptides,
Autor:
Rui Guo, Nairiti J. Sinha, Rajkumar Misra, Yao Tang, Matthew Langenstein, Kyunghee Kim, Jeffrey A. Fagan, Christopher J. Kloxin, Grethe Jensen, Darrin J. Pochan, Jeffery G. Saven
Publikováno v:
Biomacromolecules. 23(4)
With the ability to design their sequences and structures, peptides can be engineered to realize a wide variety of functionalities and structures. Herein, computational design was used to identify a set of 17 peptides having a wide range of putative
Autor:
Rajkumar Misra, Hosahudya N. Gopi, Gijo George, Srinivasarao Raghothama, Sanjit Dey, Rahi M. Reja
Publikováno v:
Chemical Communications. 56:2171-2173
Unique ε-helical organizations (11-helices) from β,γ-hybrid peptides composed of chiral β3-amino acids along with achiral 3,3- or 4,4-dimethyl substituted γ-amino acids are disclosed.
Publikováno v:
Chemistry – An Asian Journal. 14:4408-4414
Molecular chirality is ubiquitous in nature. The natural biopolymers, proteins and DNA, preferred a right-handed helical bias due to the inherent stereochemistry of the monomer building blocks. Here, we are reporting a rare co-existence of left- and
Publikováno v:
Angewandte Chemie International Edition. 58:2251-2255
The potential of structured peptides has not been explored much in the design of metal-organic frameworks (MOFs). This is partly due to the difficulties in obtaining stable secondary structures from the short α-peptide sequences. Here we report the
Autor:
Rajkumar Misra, S. K. Pandita, Ghulam M. Bhat, Bindra Thusu, Mateen Hafiz, M.R. Khan, B.K. Raina, Jonathan Craig, S. Khullar, Naveen Hakhoo, Waquar Ahmed, Jürgen Thurow
Publikováno v:
Earth-Science Reviews. 187:109-185
The Himalayan orogeny has shaped the sedimentary basins of the region, where continuous deformation formed both ‘conventional’ and ‘unconventional’ petroleum systems at multiple stratigraphic levels ranging in the age from Precambrian to Neog
Publikováno v:
Macromolecular bioscience. 21(8)
The engineering of biological molecules is the fundamental concept behind the design of complex materials with desirable functions. Over the last few decades, peptides and proteins have emerged as useful building blocks for well-defined nanostructure
Autor:
Darrin J. Pochan, Rajkumar Misra, Christopher J. Kloxin, Antonio Faraone, Jeffery G. Saven, Rui Guo, Nairiti Sinha, Jeffrey A. Fagan, Grethe V. Jensen
Publikováno v:
Journal of colloid and interface science. 606(Pt 2)
The use of isotropic potential models of simple colloids for describing complex protein–protein interactions is a topic of ongoing debate in the biophysical community. This contention stems from the unavailability of synthetic protein-like model pa