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Updated: Apr 23, 2026

Chronic Salmonella Infected Mouse Model
Published on: May 31, 2010
Plasmid-encoded Pgp3 is a major virulence factor for Chlamydia muridarum to induce hydrosalpinx in mice
Yuanjun Liu1, Yumeng Huang2, Zhangsheng Yang2
1Department of Microbiology & Immunology, University of Texas Health Science Center at San Antonio, San Antonio, Texas, USA Department of Dermatovenereology, Tianjin Medical University General Hospital, Tianjin, People's Republic of China.
Abstract:
Hydrosalpinx induction in mice by Chlamydia muridarum infection, a model that has been used to study C. trachomatis pathogenesis in women, is known to depend on the cryptic plasmid that encodes eight genes designated pgp1 to pgp8. To identify the plasmid-encoded pathogenic determinants, we evaluated C. muridarum transformants deficient in the plasmid-borne gene pgp3, -4, or -7 for induction of hydrosalpinx. C. muridarum transformants with an in-frame deletion of either pgp3 or -4 but not -7 failed to induce hydrosalpinx. The deletion mutant phenotype was reproduced by using transformants with premature termination codon insertions in the corresponding pgp genes (to minimize polar effects inherent in the deletion mutants). Pgp4 is known to regulate pgp3 expression, while lack of Pgp3 does not significantly affect Pgp4 function. Thus, we conclude that Pgp3 is an effector virulence factor and that lack of Pgp3 may be responsible for the attenuation in C. muridarum pathogenicity described above. This attenuated pathogenicity was further correlated with a rapid decrease in chlamydial survival in the lower genital tract and reduced ascension to the upper genital tract in mice infected with C. muridarum deficient in Pgp3 but not Pgp7. The Pgp3-deficient C. muridarum organisms were also less invasive when delivered directly to the oviduct on day 7 after inoculation. These observations demonstrate that plasmid-encoded Pgp3 is required for C. muridarum survival in the mouse genital tract and represents a major virulence factor in C. muridarum pathogenesis in mice.
Insights
Chlamydia muridarum's ability to cause hydrosalpinx in mice depends on plasmid gene Pgp3. Lacking Pgp3 significantly reduces chlamydial virulence and survival, identifying Pgp3 as a key factor in C. muridarum pathogenesis.
Area of Science:
- Microbiology
- Pathogenesis
- Genetics
Background:
- Hydrosalpinx induction by Chlamydia muridarum in mice models C. trachomatis pathogenesis in women.
- The C. muridarum cryptic plasmid, encoding pgp1-pgp8 genes, is essential for hydrosalpinx induction.
Purpose of the Study:
- To identify plasmid-encoded pathogenic determinants of C. muridarum.
- To evaluate the role of pgp3, pgp4, and pgp7 genes in hydrosalpinx induction and virulence.
Main Methods:
- Generated C. muridarum transformants with in-frame deletions or premature termination codons in pgp3, pgp4, or pgp7.
- Assessed hydrosalpinx induction in mice infected with these transformants.
- Evaluated chlamydial survival, genital tract ascension, and oviduct invasion.
Main Results:
- Deletion of pgp3 or pgp4, but not pgp7, abrogated hydrosalpinx induction.
- Pgp3-deficient C. muridarum showed reduced survival in the lower genital tract and impaired ascension to the upper genital tract.
- Pgp3 deficiency also decreased chlamydial invasiveness in the oviduct.
Conclusions:
- Plasmid-encoded Pgp3 is a critical effector virulence factor required for C. muridarum survival and pathogenesis in the mouse genital tract.
- Pgp3 is essential for chlamydial virulence, while Pgp7 is not directly involved in hydrosalpinx induction.
- These findings highlight Pgp3 as a major determinant of C. muridarum pathogenicity.

