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Characterization of DNA sequences that confer complement resistance in Leishmania chagasi.


ABSTRACT: Serial passage of axenically cultured Leishmania chagasi promastigotes results in a progressive diminution in resistance to complement-mediated lysis (CML), whereas high CML resistance is seen in infectious metacyclic promastigotes from the sandfly vector as well as metacyclic-like promastigotes within low-passage cultures at stationary growth phase. As we previously reported, in a screen seeking to identify novel genes involved in CML resistance: (1) a genomic cosmid library derived from DNA of CML-resistant L. chagasi promastigotes was transfected into high-passage (constitutively CML-sensitive) L. chagasi promastigotes; (2) transformants were screened for acquisition of CML-resistance; (3) multiple cosmid-transfectants exhibited partial CML resistance; and (4) the sequence for one of the cosmids (Cosmid 51) was determined. This report extends the analysis of Cosmid 51, and identifies by deletion analysis a subregion of the cosmid insert that is critical to the CML-resistance phenotype of Cosmid 51 transformants. We also report the sequence determination and initial CML-resistance activity of another cosmid that also confers partial resistance to CML.

SUBMITTER: Dahlin-Laborde RR 

PROVIDER: S-EPMC3638726 | biostudies-literature | 2008 Dec

REPOSITORIES: biostudies-literature

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Characterization of DNA sequences that confer complement resistance in Leishmania chagasi.

Dahlin-Laborde Rebecca R RR   Scolaro Eric J EJ   Romine Nathan M NM   Ramer-Tait Amanda E AE   Lei Soi Meng SM   Beetham Jeffrey K JK  

Annals of the New York Academy of Sciences 20081201


Serial passage of axenically cultured Leishmania chagasi promastigotes results in a progressive diminution in resistance to complement-mediated lysis (CML), whereas high CML resistance is seen in infectious metacyclic promastigotes from the sandfly vector as well as metacyclic-like promastigotes within low-passage cultures at stationary growth phase. As we previously reported, in a screen seeking to identify novel genes involved in CML resistance: (1) a genomic cosmid library derived from DNA of  ...[more]

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