most citedThe Ramachandran number: an order parameter for protein geometry

54 citations · 95 across the 4 of their papers we have counts for

collaborators

5 papers

q-bio.BM2015★ 54 cited

The Ramachandran number: an order parameter for protein geometry

Ranjan V. Mannige, Joyjit Kundu, Stephen Whitelam

Three-dimensional protein structures usually contain regions of local order, called secondary structure, such as -helices and -sheets. Secondary structure is characterized by…

cond-mat.soft2015★ 1 cited

Landscape of kinetically trapped binary assemblies

Ranjan V. Mannige

For two-component assemblies, an inherent structure diagram (ISD) is the relationship between set inter-subunit energies and the types of kinetic traps (inherent structures) one ma…

cond-mat.soft2015★ 1 cited

Predicting the outcome of the growth of binary solids far from equilibrium

Ranjan V. Mannige, Stephen Whitelam

The growth of multicomponent structures in simulations and experiments often results in kinetically trapped, nonequilibrium objects. In such cases we have no general theoretical fr…

physics.bio-ph2014

Modeling sequence-specific polymers using anisotropic coarse-grained sites allows quantitative comparison with experiment

Thomas K. Haxton, Ranjan V. Mannige, Ronald N. Zuckermann +1

Certain sequences of peptoid polymers (synthetic analogs of peptides) assemble into bilayer nanosheets via a nonequilibrium assembly pathway of adsorption, compression, and collaps…

cond-mat.soft2014★ 39 cited

Growth of equilibrium structures built from a large number of distinct component types

Lester O. Hedges, Ranjan V. Mannige, Stephen Whitelam

We use simple analytic arguments and lattice-based computer simulations to study the growth of structures made from a large number of distinct component types. Components possess '…