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The absence of a phenotype in mice may be explained by efficient degradation and the accumulation of mutant VAPB in a protective compartment that prevents mutant VAPB from accumulating at sites where it could engage in aberrant interactions such as the ER Golgi intermediate compartment (ERGIC), or the axon.
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For instance, the redshift was attributed solely to the planarization of the backbone, the decrease in PL quantum efficiency was explained by efficient energy transfer into quench sites, and the suppressed 0 0 transition was ascribed to the reabsorption effect.
In addition, the stability and the photocurrent induced by the Cu2O films were significantly improved when H2O2 was added to the electrolyte, which is explained by efficient scavenging of electrons, yielding oxygen and water as confirmed by gas chromatography (GC).
Urinary liver fatty acid binding protein (L-FABP) is undetectable in healthy control urine, which is explained by efficient proximal tubular internalization via megalin-mediated endocytosis [ 58, 59].
The strong quenching effect observed may be explained by the efficient electron transfer from excited CdSe to TiO2 conduction band reported previously [3].
The enhanced photocatalytic activity of the composites can be explained by the efficient separation of photogenerated electron-hole pairs due to the migration of the carriers between Bi4Ti3O12 and Ag3PO4.
If true, this could be explained by more efficient DNA repair mechanisms in plastid versus mitochondrial genomes.
The higher number of hospital admissions in the UC group might be explained by less efficient disease control.
On the other hand, lower quantum yields in this media can be explained by more efficient radiationless deactivation involving O H vibrations.
This high number of incident cases might also be explained by an efficient system for referring patients with suspected PAH, in a country with a relatively small population.
This differential effect might be explained by the efficient termination on In1m (Supplementary Figure 1 and (Dye and Proudfoot, 1999)), which might facilitate the escape of transcripts from chromatin associated Xrn2.
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