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1  sequence identity, however, it is much less heat-resistant.
2 ical for the refolding of the protein; and a heat-resistant A.niger phytase may be achieved by mutati
3  that HeLa cell nuclear extract is rich in a heat-resistant activity that dramatically enhances appar
4 tester-specific fragments, including a novel heat-resistant agglutinin (hra) gene fragment.
5          We report that EAEC 042 carries the heat-resistant agglutinin (hra1) gene, also known as hek
6                                              Heat-resistant agglutinin 1 (Hra1) is an accessory colon
7 olibactin polyketide synthesis system), hra (heat-resistant agglutinin), and vat (vacuolating toxin)
8             The protein is extremely stable, heat-resistant and highly expressed in bacteria, and all
9 that it is secreted into the supernatant, is heat resistant, and is between 3 and 10 kDa.
10                Finally, we failed to recover heat-resistant colony-forming units from frogs chronical
11 spores by light microscopy or by testing for heat-resistant colony-forming units in aged cultures of
12 e I reaction center) and Clostridia (forming heat-resistant endospores).
13 merous members that are capable of producing heat-resistant endospores.
14 pidly and irreversibly transformed to an SDS/heat-resistant form, in a process requiring an acidic co
15            Thus, sodium dodecyl sulfate- and heat-resistant high-molecular-mass pIV is derived from p
16                                              Heat-resistant mutants selected from infectious subvirio
17 onsist of semi-crystalline polymers, whereby heat-resistant, nanocrystalline beta-sheets embedded wit
18                  TMX31 aggregated into small heat-resistant oligomers composed of two to five subunit
19                         Whereas SM101 formed heat-resistant, phase-refractile spores, spore formation
20 luorescence protein gene tagging methods and heat resistant polymerases used in the polymerase chain
21 e PA oligomer from "pre-pore" to its SDS and heat-resistant "pore" conformation while not preventing
22 ls for quantitation of total viable cell and heat-resistant spore counts on taurocholate-containing m
23 tiation of vegetative Bacillus subtilis into heat resistant spores is initiated by the activation of
24 porulation, ultimately forming 50-fold fewer heat-resistant spores than the wild type.
25       (ii) All seven isolates produce highly heat-resistant spores with D(100) values (the time that
26  vegetative cells, in the ability to produce heat-resistant spores, or in the ability to trigger spor
27 body differentiate from rods into spherical, heat-resistant spores, whereas the cells outside the agg
28 mosomal cpe gene that also produce extremely heat-resistant spores.
29 es imposes a small cost on the production of heat-resistant spores.
30 tion which is essential for the formation of heat-resistant spores.
31 e wild-type strain, but is unable to produce heat-resistant spores.
32 by sigma-H, and a delay in the production of heat-resistant spores.
33 ely bypasses the need for SpoIIID to produce heat-resistant spores.
34 complementation group of Sindbis virus (SIN) heat-resistant strain, ts RNA-negative mutants.
35 st that recently released varieties are less heat resistant than older varieties, a pattern that also
36 phenol oxidase (PPO) in all samples was more heat resistant than peroxidase (POD).
37 ptation strategy involves the development of heat resistant varieties by breeders, combined with alte
38  of type 1 PV can be stabilized by selecting heat-resistant viruses.
39 eat sensitive when in supE or supF hosts and heat resistant when in Sup degrees hosts.

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