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1 in the plant-parasitic nematode Pratylenchus penetrans.
2  hemolytic and hemoxidative activities in M. penetrans.
3 ce to the root-lesion nematode (Pratylenchus penetrans), a migratory endoparasite of many crops, have
4                                   Mycoplasma penetrans adhered to cultured human cells, forming clust
5                 The very CpG poor Mycoplasma penetrans and its constitutively active CpG-specific met
6 logical differences were observed between M. penetrans and M. iowae by scanning electron microscopy (
7   The Triton X-100-insoluble fractions of M. penetrans and M. iowae consisted of similar structures t
8         Like other polarized mycoplasmas, M. penetrans and M. iowae have terminal organelles with cyt
9               SEM and light microscopy of M. penetrans and M. iowae showed the presence of membranous
10 election by a parasitic bacterium (Pasteuria penetrans) and host resistance.
11  cluster formation were inhibited by anti-M. penetrans antibodies, suggesting the involvement of spec
12       Strikingly, our analyses identified P. penetrans as ancestral to Bacillus spp.
13                                           M. penetrans bound selectively to immobilized fibronectin,
14 ent during cell division was observed for M. penetrans by microcinematography, and this suggests a ro
15   Here, we describe a 78-kDa protein from M. penetrans, designated MYPE9110, that exhibits sequence s
16                                   Mycoplasma penetrans, found mostly in HIV-infected patients, and My
17 pse microcinematography of two strains of M. penetrans, GTU-54-6A1 and HF-2, and two serovars of M. i
18                             Consequently, P. penetrans has long been recognized as a potential biocon
19          Medicarpin inhibited motility of P. penetrans in vitro.
20 comparison, live Mycoplasma fermentans or M. penetrans infection for 4 to 5 weeks induced malignant t
21                                    Pasteuria penetrans is a gram-positive, endospore-forming eubacter
22                                   Mycoplasma penetrans is a newly isolated Mollicute from the urine o
23                                   Mycoplasma penetrans is a urogenital tract pathogen implicated in t
24 ively, these findings strongly imply that P. penetrans is an ancient member of the Bacillus group.
25                                   Mycoplasma penetrans is an emerging pathogen with a reduced genome.
26  Additionally, all analyses revealed that P. penetrans is surprisingly more closely related to the sa
27   Here we report the characteristics of 4 M. penetrans isolates from the urine of immunocompetent mal
28 se red blood cells (RBCs), indicated that M. penetrans lacked hemolytic activity.
29           Our study demonstrates that the M. penetrans lipid extract of PK-digested LAMP is a potent
30                                           M. penetrans lipid extract of PK-digested LAMPs activated b
31 pression of TNF-alpha in cells induced by M. penetrans lipid extract of PK-digested LAMPs is associat
32 NF-alpha in TEP macrophages stimulated by M. penetrans lipid extract of PK-digested LAMPs.
33 peritoneal (TEP) macrophages treated with M. penetrans lipid extract of proteinase K (PK)-digested LA
34                           We suggest that P. penetrans may have evolved from an ancient symbiotic bac
35 d Haemophilus influenzae (HI) and Mycoplasma penetrans (MP) for targeted qPCR.
36 ated membrane proteins (LAMPs) of Mycoplasma penetrans rapidly induced macrophages to produce proinfl
37                                       All M. penetrans strains displayed hemolysis after 2 to 3 days
38 We conclude that subtle differences among M. penetrans strains may be critical for this organism to e
39 alyses of 33 bacterial species (including P. penetrans) using concatenation of 40 housekeeping genes,
40 ca. 65-kDa fibronectin-binding protein of M. penetrans was eluted following Sepharose-fibronectin aff
41 esian methods to the resulting data sets, P. penetrans was found to cluster tightly, with a high leve
42 copy demonstrated that the interaction of M. penetrans with target cells triggers a signal that cause
43 udies, we incubated different isolates of M. penetrans with various RBC species and observed hemolyti