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"Molecular match" between MFH and their predicted STS subtypes was confirmed both within and across datasets.
The molecular "match" between MFH and their predicted subtypes was assessed using genome-wide hierarchical clustering and Subclass-Mapping.
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Further, the study highlights the importance of molecular matching between the sensitizer and co-sensitizer in enhancing the efficiency.
Indeed, 58 out of the 76 reclassified MFH samples (76%) clustered together with samples from their predicted STS subtypes suggesting that the 170-gene predictor reflects an overall 'molecular match' between them.
Graphical Abstract Molecular matched pairs and transformation graphs facilitate interpretable molecular optimisation process.
Additionally, a new molecular matching feature provides an immediate feedback on a pattern's matching behavior across the molecule sets.
The primary condition for reaching this high therapeutic efficacy is the perfect match between two molecular interfaces: (I) complementarity determining region of the anti-HER-2 antibody and the antibody docking domain of the HER-2 receptor; (II) the complementarity determining region of anti-HBsAg antibody and the antibody hosting domain of the HBsAg.
Molecular modelling indicated a close structural match between the edges of nucleating platelets and α-iPP in multiple lattice directions, each with a dimensional mismatch of less than 4%.
The similarity between the species collected in Borneo and Spongiforma thailandica was confirmed with molecular analysis, which showed a 98% match between ribosomal DNA sequences of the two.
The similarity between S. thailandica and S. squarepantsii was confirmed with molecular analysis, which showed a 98% match between large subunit ribosomal DNA sequences of the two a value typical of many species in the same genus of Boletaceae.
Therefore, we suggest that the apparent lack of match between phenotype and molecular defects in flies expressing 60 CUG repeat RNA might stem from the very different sensitivities of molecular methods and standard phenotypic assessment methods.
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