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Thus, the probability that the Hsp90/Sti1 interaction causes the phenotype of the Hsp90rr:Δ695 mutant is high.
While the Kd of the wild type is about 9 μM, the Kd of the N46Q/V110Q mutant is high almost beyond detection, indicating that the mutant essentially does not bind the substrate.
In conclusion, the present study revealed that (1) BCP T1762/A1764 mutant is an independent risk factor for progression to cirrhosis; (2) the prevalence of BCP T1762/A1764 mutant in non-cirrhotic patients with HCC is low, as in inactive carriers; and (3) the prevalence of BCP T1762/A1764 mutant is high in both cirrhotic patients with HCC and cirrhotic patients without HCC.
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Our results clearly show that the WUE of the esk1-5 mutant is higher than the wild type.
Consequently, the level of H2O2 in the kua1 mutant is higher than that in the wild-type plant.
Interestingly, we also found that the mar activity in the mutant is higher in the absence of salicylate than the maximum mar activity induced by even high concentrations of salicylate in the wild type strain.
Interestingly, the expression level of the Delta-KRK-V5 mutant was high in both the presence and absence of MG132 treatment (Figure S1 and Figure 3A).
The frequency of precore A1896 mutant was high in patients with cirrhosis (76%), but this figure was similar to that observed in inactive carriers (81%), as shown in Table 3.
When the light intensity was increased to 200 μmol photons m−2 s−1 under atmospheric air condition, biomass production of the ∆apcE mutant was higher than that of GT during 15 days of cultivation (Figure 3).
At other time points, relative expression levels of tri3, tri4, tri5, tri6, tri10, tri12, and tri14 in the Δtri11 mutant were higher than in the wild strain (Fig. 5).
While the germination rate of the 129B08/nced3 mutant was similar to that of Col-0 in media either lacking Glc or containing low amounts of Glc (0.2% Glc) (Figs. 2b, 3a), the rate in this mutant was higher than that of Col-0 under high Glc (4.0% Glc) conditions 3 days after sowing (Fig. 3b).
Write better and faster with AI suggestions while staying true to your unique style.
Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com