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1 ured a long terminal repeat sequence from an intracisternal A particle (an endogenous retrovirus-like
2  in mutant mice revealed the insertion of an intracisternal A particle (IAP) element in intron 7.
3 provide evidence that mutants carry a 5.4-kb intracisternal A particle (IAP) element insertion upstre
4 defense of deleterious retrotransposition of intracisternal A particle (IAP) elements, IAP loci are h
5 hat Ahvy resulted from the integration of an intracisternal A particle (IAP) in an antisense orientat
6 murine endogenous retrovirus-L (MuERV-L) and intracisternal A particle (IAP), two autonomous long ter
7       Mili mutants derepress LINE-1 (L1) and intracisternal A particle and lose DNA methylation of L1
8  mutant ep gene revealed the insertion of an intracisternal A particle element in a protein-coding 3'
9 The sph(Dem) mutation is the insertion of an intracisternal A particle element in intron 10 of the er
10   The Eya1(bor) mutant hypomorph contains an intracisternal A particle insertion in intron 7 of the E
11 ement (RTE), present in a subclass of rodent intracisternal A particle retroelements, that is able to
12           In contrast, imprinted regions and intracisternal A particle retroelements, which are resis
13                           The mutation is an intracisternal A particle retroposon insertion in intron
14  splicing in scm homozygotes, with 1.5 kb of intracisternal A particle retrotransposon sequence inser
15 sine-guanine dinucleotide) methylation in an intracisternal A particle retrotransposon upstream of th
16 es from the long terminal repeat of a murine intracisternal A particle retrotransposon were not impri
17  Fused and Knobbly, result from insertion of intracisternal A particle retrotransposons into the gene
18  that are interrupted by the insertion of an intracisternal A particle sequence.
19                                              Intracisternal A particle sequences closest to those pre
20  activation of ERVs, including CpG-rich IAP (intracisternal A particle) proviruses.
21 s, which inhibit retrotransposition (RTP) of intracisternal A particles (IAP).
22          The long terminal repeats of murine intracisternal A particles (IAPs) contain an IAP proxima
23 le of P bodies in the movement of endogenous intracisternal A particles (IAPs) in mammalian cells.
24                            Major satellites, intracisternal A particles (IAPs), and imprinted genes r
25 s were cloned by inverse PCR and revealed an intracisternal A-particle (IAP) element inserted near th
26 ined a novel element with homology to rodent intracisternal A-particle (IAP) retroelements.
27 OBEC3A, can reduce retrotransposition by the intracisternal A-particle (IAP) retrotransposon in human
28 e by a solo long terminal repeat (LTR) of an intracisternal A-particle (IAP), an endogenous retrotran
29                                         This intracisternal A-particle element is flanked by duplicat
30                                              Intracisternal A-particle family retrotransposons were n
31 nd the RNA transport element found in rodent intracisternal A-particle LTR retrotransposons.
32           The drugs intermediately inhibited intracisternal A-particle retrotransposition but were in
33 d western blot tests for HIV-1 and the human intracisternal A-type particle (HIAP), on serum samples
34 was detected in mice containing 2 alleles of intracisternal A-type particle (IAP) retrotransposon seq
35                           The methylation of intracisternal A-type particle (IAP) sequences is mainta
36 ed in the brain and ectopically activated by intracisternal A-type particle long terminal repeats in
37 ty of engineered human LINE-1 (L1) and mouse intracisternal A-type particle retrotransposons in cultu
38 on mechanism in detail within one group, the intracisternal A-type particles (IAPs), and performing s
39 f the early transposon (ETn)/MusD family and intracisternal A-type particles (IAPs).
40 seudoknot from the gag-pro junction of mouse intracisternal A-type particles (mIAP), an endogenous re
41                            A retrovirus-like intracisternal-A particle (IAP) family sequence was also
42 x(J) mice as a result of the insertion of an intracisternal-A particle (IAP) into intron 5 of Usp14.
43  the CTE and which is part of a novel murine intracisternal-A particle (IAP) retroelement, inserted w
44 ate that this effect represses expression of intracisternal-A particle endogenous retrovirus elements
45                                              Intracisternal-A-particle-related envelope-encoding (IAP
46 ocused on neuronal injury resulting from the intracisternal administration of aluminum maltolate to N
47 u and neurofilament protein aggregates using intracisternal administration of aluminum maltolate to r
48 n the blood (<24 h) underscores the value of intracisternal administration of IL-1RA for therapeutic
49   In addition, we demonstrated that a single intracisternal administration of interleukin-1 receptor
50 sed in a canine model of NPE produced by the intracisternal administration of veratrine.
51 to time-matched vehicle control experiments, intracisternal application of SB-269970 (30-300 microg k
52 denosine or knock-down of AC-5 expression by intracisternal AS-ODN.
53  by stress responses that deplete glucose or intracisternal calcium or otherwise disrupt glycoprotein
54 .), inhibited significantly Fos-LI evoked by intracisternal capsaicin administration.
55 also more potent than astressin at reversing intracisternal CRF- and abdominal surgery-induced delay
56           Many of these cells also contained intracisternal crystalline pole-like inclusions similar
57                      Twenty-four hours after intracisternal delivery of autologous EPCs, basilar arte
58 nse granular aggregates within cisternae and intracisternal filament bundles associated with trans-Go
59  accumulation of moderate-density content or intracisternal granules.
60                           In conscious rats, intracisternal (i.c) WIN55,212-2 (3, 10, 30 mug/rat) eli
61       Experimental meningitis was induced by intracisternal (i.c.) administration of lipopolysacchari
62                                              Intracisternal (i.c.) injection of astressin (10 microg/
63                  We previously reported that intracisternal (i.c.) injection of peptide YY (PYY) and
64 ed the influence of repeated phasic CRDs and intracisternal (ic) CRF on the spontaneous discharge rat
65 er a 24 h-fasting, GLP-1 was administered by intracisternal (ic)-injection immediately after the soli
66                                              Intracisternal IL-10 in concentrations >1 microg signifi
67 ocalized to the ER and delimit the prolamine intracisternal inclusion granules (PB-ER), whereas glute
68  within the ER lumen and their assembly into intracisternal inclusion granules are unknown, but the i
69                                              Intracisternal infection of infant rats with increasing
70  the pial brain surface following controlled intracisternal infusions in anesthetized animals.
71                       We found that biweekly intracisternal injection of basic fibroblast growth fact
72                    However, 5 days after the intracisternal injection of blood into rabbits to mimic
73                                     After an intracisternal injection of CTOP (micro antagonist), nor
74   Comparison of a ure1 mutant with H99 after intracisternal inoculation into corticosteroid-treated r
75 travenous IL-10 (1 mg/kg) in two doses after intracisternal LOS significantly reduced CSF TNF-alpha a
76                            Pretreatment with intracisternal nor-BNI 0.32 mg significantly blocked bot
77  larger animal, we treated beagle dogs using intracisternal or intracerebroventricular delivery.
78  of solute movement in mouse brain following intracisternal or intraparenchymal solute injection.
79                                              Intracisternal RX 77368 significantly increased acid out
80                        Our data suggest that intracisternal transplantation of SVZ cells provides an

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