Host complement C3 promotes malaria transmission by killing symbiotic bacteria in the mosquito midgut

B Biao He (Department of Pathogenic Biology, Army Medical University) M Meilin Li (Department of Pathogenic Biology, Army Medical University) S Shuai Guo (Department of Chemistry) F Feng Zhu Z Zhiwei Jiao (GBRCE for Functional Molecular Engineering, MOE Laboratory of Bioinorganic and Synthetic Chemistry, LIFM, IGCME, School of Chemistry) J Jianyong Li (Department of Pathogenic Biology, Army Medical University) N Nie Tan (Department of Pathogenic Biology, Army Medical University) S Shiming Jiao (Department of Pathogenic Biology, Army Medical University) T Taiping Liu (Department of Pathogenic Biology, Army Medical University) J Jian Zhang Y Yongling Fan (Department of Pathogenic Biology, Army Medical University) Y Yuanli Gao (Department of Pathogenic Biology, Army Medical University) T Taoli Zhou (Department of Pathogenic Biology, Army Medical University) J Jian Li W Wei Huang L Lubin Jiang (Key Laboratory of Molecular Virology and Immunology, Shanghai institute of immunity and infection, Institut Pasteur of Shanghai, University of Chinese Academy of Sciences, Chinese Academy of Sciences) Z Zurui Lin (Dvision of Malaria Control, Yunnan Institute of Parasitic Diseases) S Sibao Wang (New Cornerstone Science Laboratory, Chinese Academy of Sciences Key Laboratory of Insect Developmental and Evolutionary Biology, Chinese Academy of Sciences Center for Excellence in Molecular Plant Sciences, Shanghai Institute of Plant Physiology and Ecology, Chinese Academy of Sciences) W Wenyue Xu (Department of Pathogenic Biology, Army Medical University)

Abstract

Host-derived factors ingested during mosquito blood feeding are poorly understood modulators of malaria transmission. Here, we demonstrated that host complement C3, acquired by mosquitoes during Plasmodium infection, significantly enhanced rodent malaria infection in laboratory-reared mosquitoes. This effect was recapitulated in field-caught Anopheles sinensis mosquitoes, confirming its relevance to malaria transmission in a more natural setting. Moreover, host-derived C3 significantly reduced the efficacy of anti-Pfs25 antibodies in blocking malaria transmission. Mechanistically, host-derived C3 lyses the mosquito midgut symbiont Elizabethkingia anophelis ( E. anophelis )—a bacterium that intrinsically suppresses parasite development by blocking the zygote-to-ookinete transition. Strikingly, host-derived C3 in mosquitoes appears to be activated by the alternative pathway, and inhibiting Factor B with Iptacopan (LNP023) reduced Plasmodium falciparum ( P. falciparum ) infection, while increased the efficacy of anti-Pfs25 antibodies to blocking P. falciparum transmission in the standard membrane-feeding assay. Therefore, this study describes a strategy of the malaria parasite to utilize host complement C3 to promote its transmission and provides us with an avenue to block malaria transmission and improve the blocking efficacy of anti-Pfs25 antibodies by the inhibition of C3 activation.

Article Details

Volume / Issue Vol. 122, Issue 22
Published June 03, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (19)

B

Biao He

Department of Pathogenic Biology, Army Medical University

M

Meilin Li

Department of Pathogenic Biology, Army Medical University

S

Shuai Guo

Department of Chemistry

F

Feng Zhu

Z

Zhiwei Jiao

GBRCE for Functional Molecular Engineering, MOE Laboratory of Bioinorganic and Synthetic Chemistry, LIFM, IGCME, School of Chemistry

J

Jianyong Li

Department of Pathogenic Biology, Army Medical University

N

Nie Tan

Department of Pathogenic Biology, Army Medical University

S

Shiming Jiao

Department of Pathogenic Biology, Army Medical University

T

Taiping Liu

Department of Pathogenic Biology, Army Medical University

J

Jian Zhang

Y

Yongling Fan

Department of Pathogenic Biology, Army Medical University

Y

Yuanli Gao

Department of Pathogenic Biology, Army Medical University

T

Taoli Zhou

Department of Pathogenic Biology, Army Medical University

J

Jian Li

W

Wei Huang

L

Lubin Jiang

Key Laboratory of Molecular Virology and Immunology, Shanghai institute of immunity and infection, Institut Pasteur of Shanghai, University of Chinese Academy of Sciences, Chinese Academy of Sciences

Z

Zurui Lin

Dvision of Malaria Control, Yunnan Institute of Parasitic Diseases

S

Sibao Wang

New Cornerstone Science Laboratory, Chinese Academy of Sciences Key Laboratory of Insect Developmental and Evolutionary Biology, Chinese Academy of Sciences Center for Excellence in Molecular Plant Sciences, Shanghai Institute of Plant Physiology and Ecology, Chinese Academy of Sciences

W

Wenyue Xu

Department of Pathogenic Biology, Army Medical University