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1  well as for horizontally transmitted type-D simian retroviruses.
2  a different export pathway from that of the simian retroviruses.
3 114, baboon endogenous virus, and the type D simian retroviruses.
4 onal RNA control element (CTE) of the type D simian retroviruses.
5 d SNV appears to use the same receptor as do simian retroviruses.
6 h the gag-pro frameshifting pseudoknots from simian retrovirus-1 (SRV-1) and mouse mammary tumor viru
7 proximately 84% fidelity for the appropriate simian retrovirus 5-bp host duplication.
8 study looking for evidence of infection with simian retroviruses among persons occupationally exposed
9                             Surveillance for simian retroviruses at three research centers and two zo
10                                   The type D simian retroviruses cause immunosuppression in macaques
11  concerns associated with human infection by simian retroviruses endemic in nonhuman primates (NHPs).
12 structural model is similar to those for the Simian retrovirus frameshifting element and the Human im
13 doknots in feline immunodeficiency virus and simian retrovirus have different loop sequences, but the
14                                          The simian retroviruses have a CTE which interacts with the
15  frequent infection with SFV than with other simian retroviruses in persons working with NHPs and pro
16 thora of potentially zoonotic microbes, with simian retroviruses receiving heightened attention due t
17          The CTE(IAP) and CTEs of the type D simian retroviruses represent a novel class of RNA eleme
18                       Natural infection with simian retrovirus (SRV) has long been recognized in rhes
19                                      Endemic simian retrovirus (SRV) infection can cause fatal simian
20                The natural history of type D simian retrovirus (SRV) infection is poorly characterize
21 was present as RNA in viral particles, while simian retrovirus (SRV) was present as genetically defec
22 cell lines known to be susceptible to type D simian retroviruses (SRVs) and to BaEV.
23                 Studying the transmission of simian retroviruses to humans can help define the import
24  env gene and the 3' long terminal repeat of simian retrovirus type 1 (SRV-1) can functionally replac
25 acement of the Rev-responsive element by the simian retrovirus type 1 constitutive transport element,
26  constitutive transport element (CTE) of the simian retrovirus type 1, is not affected.
27  the constitutive transport element (CTE) of simian retrovirus type 1.
28 downstream of the gag-pro frameshift site of simian retrovirus type-1 (SRV-1) and a functional mutant
29 PK more closely than the initially suggested simian retrovirus type-1 pseudoknot.
30  the constitutive transport element (CTE) of simian retrovirus was identified as adenosine 5'-triphos
31 not observed on CEM x174 cells infected with simian retroviruses, which do not depend on CCR5 for ent

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