Description(s) found:
SHOW ONLY BEST
|
gi|10120793|pdb|1F51|D Chain D, A Transient Interaction Between Two Phosphorelay Proteins Trapped In A Crystal Lattice Reveals The Mechanism Of Molecular Recognition And Phosphotransfer In Singal Transduction
[NCBI NR]
gi|10120792|pdb|1F51|C Chain C, A Transient Interaction Between Two Phosphorelay Proteins Trapped In A Crystal Lattice Reveals The Mechanism Of Molecular Recognition And Phosphotransfer In Singal Transduction
[NCBI NR]
gi|10120791|pdb|1F51|B Chain B, A Transient Interaction Between Two Phosphorelay Proteins Trapped In A Crystal Lattice Reveals The Mechanism Of Molecular Recognition And Phosphotransfer In Singal Transduction
[NCBI NR]
gi|10120790|pdb|1F51|A Chain A, A Transient Interaction Between Two Phosphorelay Proteins Trapped In A Crystal Lattice Reveals The Mechanism Of Molecular Recognition And Phosphotransfer In Singal Transduction
[NCBI NR]
Chain D, A Transient Interaction Between Two Phosphorelay Proteins Trapped In A Crystal Lattice Reveals The Mechanism Of Molecular Recognition And Phosphotransfer In Singal Transductiongi|10120792|pdb|1F51|C Chain C, A Transient Interaction Between Two P
[nrdb_11152004_Chlamydomonas]
Chain D, A Transient Interaction Between Two Phosphorelay Proteins Trapped In A Crystal Lattice Reveals The Mechanism Of Molecular Recognition And Phosphotransfer In Singal Transduction
[nr-271106-contam.fasta]
Chain C, A Transient Interaction Between Two Phosphorelay Proteins Trapped In A Crystal Lattice Reveals The Mechanism Of Molecular Recognition And Phosphotransfer In Singal Transduction
[nr-271106-contam.fasta]
Chain A, A Transient Interaction Between Two Phosphorelay Proteins Trapped In A Crystal Lattice Reveals The Mechanism Of Molecular Recognition And Phosphotransfer In Singal Transduction
[nr-271106-contam.fasta]
Chain B, A Transient Interaction Between Two Phosphorelay Proteins Trapped In A Crystal Lattice Reveals The Mechanism Of Molecular Recognition And Phosphotransfer In Singal Transduction
[nr-271106-contam.fasta]
|