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1  this PME is non-processive, halophilic, and acidophilic.
2 ethanogen (Methanococcus maripaludis S2), an acidophilic and aerobic thermophile (Sulfolobus solfatar
3              Though cysteine proteinases are acidophilic and normally confined to the lysosomal netwo
4 ent of genomic change that distinguishes the acidophilic archaeon Ferroplasma acidarmanus fer1 from a
5 rter enzyme in expression hosts that are not acidophilic, as well as lactic acid bacteria and other m
6 e identified peptidoglycan from thermophilic acidophilic bacteria (Alicyclobacillus acidocaldarius) a
7 wetland plant species and the association of acidophilic bacteria in the wetland rhizosphere indicate
8               We have examined PurE from the acidophilic bacterium Acetobacter aceti (AaPurE), focusi
9 ia in comprehensively characterized, natural acidophilic biofilm communities.
10 dom shotgun sequencing of DNA from a natural acidophilic biofilm, we report reconstruction of near-co
11 r of a genomically uncharacterized, natural, acidophilic biofilm.
12 from community genomic data from two natural acidophilic biofilms.
13 perivenular necroinflammatory foci, and many acidophilic bodies scattered throughout the lobule.
14                                              Acidophilic chemolithoautotrophic iron(II)-oxidizing bac
15                             The abilities of acidophilic chemolithotrophic bacteria and archaea to ac
16 umulation of three lysosomal proteins and an acidophilic dye.
17 ith a second class of endosomes that take up acidophilic dyes (acidic endosomes [AEs]).
18 ro slightly reduced the respiratory burst of acidophilic granulocytes and drastically altered the exp
19 rt that gilthead seabream (Sparus aurata L.) acidophilic granulocytes, which are the functional equiv
20 res which show histopathological findings of acidophilic ground substance in DFNA9 patients.
21 , like those involved in Fe(II) oxidation by acidophilic iron oxidizers or anaerobic photoferrotrophs
22 r Archaea and the frequent occurrence of the acidophilic iron(II)- and sulfur-oxidizing and iron(III)
23 lly) pure cultures of the recently described acidophilic, iron-oxidizing heterotrophic bacterium Acid
24   Here we report a direct interaction of the acidophilic kinase Polo-like kinase 2 (PLK2, also known
25      Oenococcus oeni is an alcohol-tolerant, acidophilic lactic acid bacterium primarily responsible
26 s of me(v)/me(v) marrow revealed the classic acidophilic macrophage pneumonia of me(v)/me(v) mice, bu
27                                     Obligate acidophilic members of the thaumarchaeotal genus Candida
28                     Metagenomic data from an acidophilic microbial community enabled a genomewide, co
29 referred to as ARMAN (archaeal Richmond Mine acidophilic nanoorganisms), from environmental samples a
30 al evaluation of liver showed more extensive acidophilic necrosis and severe pathological changes in
31 -h recovery groups had higher percentages of acidophilic neurons (65% and 54% respectively) than the
32          Neuronal cell counting revealed 20% acidophilic neurons in dorsal dentate hilus after 40-min
33  a 0-3 scale by estimating the percentage of acidophilic neurons in each of 23 brain regions.
34  the 1-h and 3-h seizure groups (31% vs. 43% acidophilic neurons respectively).
35 CA4), quantitative cell counts of normal and acidophilic neurons were also performed.
36 s (Euryarchaeota) is represented by the most acidophilic organisms known so far that are poorly amena
37 ted on the basic and acidic phosphopeptides: acidophilic phosphorylation sites were predominately enr
38                      Alveolar macrophages in acidophilic pneumonia, a major cause of death of aging 1
39                           VP30 is a strongly acidophilic protein; RNA binding became stronger as pH w
40 n ancestor via horizontal gene transfer from acidophilic representatives of Euryarchaeota.
41 a in all the enrichments and subsequently an acidophilic strain (TR1) was isolated.
42 lopment of AMD-like communities dominated by acidophilic sulfide-oxidizing bacteria on untreated OWR
43               Microbiological suitability of acidophilic sulfur reduction for metal recovery was expl
44 versity biofilms dominated by members of the acidophilic sulfur-oxidizer genus Acidithiobacillus.
45 by inundation, exists corresponding to rapid acidophilic to halophilic plant community change and a c
46                                   The thermo-acidophilic unicellular red alga Galdieria sulphuraria r

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