Ranjith Padinhateeri

About Ranjith Padinhateeri

Ranjith Padinhateeri, With an exceptional h-index of 20 and a recent h-index of 15 (since 2020), a distinguished researcher at Indian Institute of Technology Bombay, specializes in the field of Chromatin, Self-assembly, Physics and Biology.

His recent articles reflect a diverse array of research interests and contributions to the field:

Shear flow as a tool to distinguish microscopic activities of molecular machines in a chromatin loop

Predicting scale-dependent chromatin polymer properties from systematic coarse-graining

Intermolecular interactions underlie protein/peptide phase separation irrespective of sequence and structure at crowded milieu

Dynamic control of gene expression: how lncRNAs shape transcriptional condensates

SUMO1 hinders α‐Synuclein fibrillation by inducing structural compaction

Disruption of polyhomeotic polymerization decreases nucleosome occupancy and alters genome accessibility

Nonequilibrium switching of segmental states can influence compaction of chromatin

α-Synuclein aggregation intermediates form fibril polymorphs with distinct prion-like properties

Ranjith Padinhateeri Information

University

Position

___

Citations(all)

1553

Citations(since 2020)

1046

Cited By

785

hIndex(all)

20

hIndex(since 2020)

15

i10Index(all)

36

i10Index(since 2020)

27

Email

University Profile Page

Google Scholar

Ranjith Padinhateeri Skills & Research Interests

Chromatin

Self-assembly

Physics and Biology

Top articles of Ranjith Padinhateeri

Shear flow as a tool to distinguish microscopic activities of molecular machines in a chromatin loop

bioRxiv

2024

Predicting scale-dependent chromatin polymer properties from systematic coarse-graining

Nature Communications

2023/7/11

Kiran Kumari
Kiran Kumari

H-Index: 4

Ranjith Padinhateeri
Ranjith Padinhateeri

H-Index: 14

Intermolecular interactions underlie protein/peptide phase separation irrespective of sequence and structure at crowded milieu

Nature Communications

2023/10/4

Dynamic control of gene expression: how lncRNAs shape transcriptional condensates

Biophysical Journal

2023/7/11

Ranjith Padinhateeri
Ranjith Padinhateeri

H-Index: 14

SUMO1 hinders α‐Synuclein fibrillation by inducing structural compaction

Protein Science

2023/5

Disruption of polyhomeotic polymerization decreases nucleosome occupancy and alters genome accessibility

Life Science Alliance

2023/5/1

Jakub Mieczkowski
Jakub Mieczkowski

H-Index: 12

Ranjith Padinhateeri
Ranjith Padinhateeri

H-Index: 14

Nonequilibrium switching of segmental states can influence compaction of chromatin

bioRxiv

2023

Soudamini Sahoo
Soudamini Sahoo

H-Index: 1

Ranjith Padinhateeri
Ranjith Padinhateeri

H-Index: 14

α-Synuclein aggregation intermediates form fibril polymorphs with distinct prion-like properties

Journal of Molecular Biology

2022/10/15

Nucleosome sliding can influence the spreading of histone modifications

Physical Review E

2022/8/16

Ranjith Padinhateeri
Ranjith Padinhateeri

H-Index: 14

Heterogeneous interactions and polymer entropy decide organization and dynamics of chromatin domains

Biophysical Journal

2022/7/19

Direct demonstration of seed size-dependent α-synuclein amyloid amplification

The journal of physical chemistry letters

2022/7/11

Role of non-specific interactions in the phase-separation and maturation of macromolecules

PLOS Computational Biology

2022/5/9

High fidelity epigenetic inheritance: Information theoretic model predicts threshold filling of histone modifications post replication

PLOS Computational Biology

2022/2/17

Nithya Ramakrishnan
Nithya Ramakrishnan

H-Index: 2

Ranjith Padinhateeri
Ranjith Padinhateeri

H-Index: 14

Liquid condensate is a common state of proteins and polypeptides at the regime of high intermolecular interactions

bioRxiv

2022/1/2

Spatiotemporal solidification of α-synuclein inside the liquid droplets

BioRxiv

2021/10/21

Continuous variable responses and signal gating form kinetic bases for pulsatile insulin signaling and emergence of resistance

Proceedings of the National Academy of Sciences

2021/10/12

Ranjith Padinhateeri
Ranjith Padinhateeri

H-Index: 14

Ullas Kolthur-Seetharam
Ullas Kolthur-Seetharam

H-Index: 3

Orc4 spatiotemporally stabilizes centromeric chromatin

Genome Research

2021/4/1

Spatiotemporal organization of chromatin domains: role of interaction energy and polymer entropy

arXiv preprint arXiv:2102.09123

2021/2

Role of nucleosome positioning in 3D chromatin organization and loop formation

Journal of biosciences

2020/12

Ranjith Padinhateeri
Ranjith Padinhateeri

H-Index: 14

See List of Professors in Ranjith Padinhateeri University(Indian Institute of Technology Bombay)