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Fibrinogen binds to a wide variety of nanomaterials because it has several different binding domains that accommodate different nanomaterials [19].
We present evidence that OppA binds to a wide range of peptides in terms of their size, ranging from the nonapeptide bradykinin to the tripeptide GSH.
MBL binds to a wide range of pathogens including bacteria, viruses, and fungi [ 69, 70].
It binds to a wide variety of cellular targets in order to transduce calcium-based signals.
The αvβ3 integrin binds to a wide variety of extracellular matrix proteins, which expose the tripeptide sequence Arg-Gly-Asp (RGD) as a common receptor recognition signal [ 65].
Integrins are transmembrane receptors where the extracellular domain binds to a wide variety of ECM proteins and the intracellular cytoplasmic domain anchor to the cytoskeletal proteins.
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This result indicates that in vivo RIN binds to a wider spectrum of CArG-box sequences within the genome than previously expected based on in vitro assay.
Then we conclude this section by applying the iteration bound to a wide variety of kernel functions.
They bind to a wide variety of small molecules and fatty acids and carry of them to different parts of the body.
The high AUC result for WDI is expected since it contains marketed and in-development small molecule drugs that bind to a wide variety of protein targets.
1,4-Dihydropyridines are regarded as privileged structures for drug design, i.e. they tend to bind to a wide variety of receptor sites.
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binds to a wide range
binds to a central
binds to a ribosome
binds to a cytosolic
binds to a pre-existing
binds to a GU-rich
binds to a different
binds to a lipopolysaccharide-binding
binds to a precise
binds to a proline-rich
binds to a pseudo-palindromic
binds to a bipartite
binds to a cell-surface
binds to a new
binds to a second
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