Sentence examples for linkage binding from inspiring English sources

Exact(2)

One major barrier limiting cross-species transmission into humans (and vice versa) is the evolution of differences in sialic acid linkage binding specificity between humans and birds and humans and primates (Rich et al. 2009).

We then re-analyzed the families of data sets in the context of global analysis, employing a proton linkage binding model implemented in the global data analysis platform SEDPHAT, and examined the information content of all data sets by a detailed statistical error analysis of the parameter estimates.

Similar(56)

We suggest a structural mechanism for the linkage between binding of ATP and activation of the RNA binding site.

More specifically, we want to understand the origin of α = 350-fold enhancement (positive heterotropic linkage) of binding of SNF to either SLIV or U2A′ (upon binding by the other) with a corresponding free energy (Δ g°) of −3.5 kcal/mol.

In the three cases examined, PEG linkage improved binding affinities of ADP3 greatly against chicken IgY, improved NMOP6 binding to a human IgG1 protein modestly, and had little effect on binding of FLAG peptide to anti-FLAG antibody.

The source of the large linkage between binding and protonation needs to be investigated to improve our understanding of the binding mechanism.

Talin is responsible, along with its adaptor proteins, for maintaining the cytoskeleton-membrane linkage by binding to integral membrane proteins and to the cytoskeleton.

Viral particles bind specifically to digestive ducts (midgut, main and secondary ducts, and tubules) by carbohydrate structures with a terminal N-acetylgalactosamine residue in an α linkage (same binding site used for recognition of human histo-blood group antigens).

16 Factors that impact HA persistence include HA concentration, percentage of cross-linkage, type of cross-linkage, water binding capacity, and injection technique.

Assuming two-state exchange is the basis of the allosteric effect, the difference in linkage between SLII and SLIV binding and U2A′ binding could be explained by substantially different affinities of the RNAs for the two states (in eq 6, βSLIV ≫ βSLII).

Two factors are generally correlated with lower ranking in the binding: linkage in α- rather than β-configuration and linkage adjacent to a fucose residue.

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