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EFI - Enzyme Similarity Tool
EFI - Enzyme Similarity Tool

Revealing Unexplored Sequence-Function Space Using Sequence Similarity  Networks | Biochemistry
Revealing Unexplored Sequence-Function Space Using Sequence Similarity Networks | Biochemistry

Using Sequence Similarity Networks for Visualization of Relationships  Across Diverse Protein Superfamilies | PLOS ONE
Using Sequence Similarity Networks for Visualization of Relationships Across Diverse Protein Superfamilies | PLOS ONE

Refaat Hamed on Twitter: "Sequence Similarity Network analysis of  crotonases.. Crotonases: Nature's Exceedingly Convertible Catalysts..  https://t.co/skHbShZ9j0 https://t.co/pNUayzdm4S" / Twitter
Refaat Hamed on Twitter: "Sequence Similarity Network analysis of crotonases.. Crotonases: Nature's Exceedingly Convertible Catalysts.. https://t.co/skHbShZ9j0 https://t.co/pNUayzdm4S" / Twitter

EFI - Enzyme Similarity Tool
EFI - Enzyme Similarity Tool

Visualizing the superfamily of metallo-β-lactamases through sequence  similarity network neighborhood connectivity analysis - ScienceDirect
Visualizing the superfamily of metallo-β-lactamases through sequence similarity network neighborhood connectivity analysis - ScienceDirect

Frontiers | Sequence similarity network reveals the imprints of major  diversification events in the evolution of microbial life
Frontiers | Sequence similarity network reveals the imprints of major diversification events in the evolution of microbial life

Level 2 sequence similarity network painted by type of life.
Level 2 sequence similarity network painted by type of life.

Sequence similarity network: The similarity network was constructed as... |  Download Scientific Diagram
Sequence similarity network: The similarity network was constructed as... | Download Scientific Diagram

Sequence similarity network of 436 TonB-dependent transporters from 153  different Roseobacter genomes. Sequence similarity network of 436  TonB-dependent. - ppt download
Sequence similarity network of 436 TonB-dependent transporters from 153 different Roseobacter genomes. Sequence similarity network of 436 TonB-dependent. - ppt download

The GMC superfamily of oxidoreductases revisited: analysis and evolution of  fungal GMC oxidoreductases | Biotechnology for Biofuels and Bioproducts |  Full Text
The GMC superfamily of oxidoreductases revisited: analysis and evolution of fungal GMC oxidoreductases | Biotechnology for Biofuels and Bioproducts | Full Text

Sequence similarity networks of the IPR037434 family. The sequence... |  Download Scientific Diagram
Sequence similarity networks of the IPR037434 family. The sequence... | Download Scientific Diagram

Tools and strategies for discovering novel enzymes and metabolic pathways -  ScienceDirect
Tools and strategies for discovering novel enzymes and metabolic pathways - ScienceDirect

SFLD - Sequence Similarity Networks
SFLD - Sequence Similarity Networks

Using Sequence Similarity Networks for Visualization of Relationships  Across Diverse Protein Superfamilies | PLOS ONE
Using Sequence Similarity Networks for Visualization of Relationships Across Diverse Protein Superfamilies | PLOS ONE

IJMS | Free Full-Text | Sequence and Structural Analysis of AA9 and AA10  LPMOs: An Insight into the Basis of Substrate Specificity and  Regioselectivity
IJMS | Free Full-Text | Sequence and Structural Analysis of AA9 and AA10 LPMOs: An Insight into the Basis of Substrate Specificity and Regioselectivity

Similarity network fusion for aggregating data types on a genomic scale |  Nature Methods
Similarity network fusion for aggregating data types on a genomic scale | Nature Methods

Glycoconjugate pathway connections revealed by sequence similarity network  analysis of the monotopic phosphoglycosyl transferases | PNAS
Glycoconjugate pathway connections revealed by sequence similarity network analysis of the monotopic phosphoglycosyl transferases | PNAS

Prediction and characterization of enzymatic activities guided by sequence  similarity and genome neighborhood networks | eLife
Prediction and characterization of enzymatic activities guided by sequence similarity and genome neighborhood networks | eLife

Large-scale sequence similarity analysis reveals the scope of sequence and  function divergence in PilZ domain proteins | bioRxiv
Large-scale sequence similarity analysis reveals the scope of sequence and function divergence in PilZ domain proteins | bioRxiv

Evolution of substrate specificity in bacterial AA10 lytic polysaccharide  monooxygenases | Biotechnology for Biofuels and Bioproducts | Full Text
Evolution of substrate specificity in bacterial AA10 lytic polysaccharide monooxygenases | Biotechnology for Biofuels and Bioproducts | Full Text

Testing ecological theories with sequence similarity networks: marine  ciliates exhibit similar geographic dispersal patterns as multicellular  organisms | BMC Biology | Full Text
Testing ecological theories with sequence similarity networks: marine ciliates exhibit similar geographic dispersal patterns as multicellular organisms | BMC Biology | Full Text