High-resolution proteomics unveils salivary gland disruption and saliva-hemolymph protein exchange in Plasmodium-infected mosquitoes

T Thiago Luiz Alves e Silva S Sachi Kanatani A Ana Beatriz Barletta Ferreira (Laboratory of Malaria and Vector Research, National Institute of Allergy and Infectious Diseases, National Institutes of Health) C Cindi L. Schwartz B Benjamin Liffner O Octavio A. C. Talyuli J Janet Olivas B Bianca M. Nagata Z Zarna Rajeshkumar Pala T Tales Pascini D Derron A. Alves M Ming Zhao M Motoshi Suzuki L Lilian P. Dorner (Heidelberg University Medical Faculty, Center for Infectious Diseases, Parasitology) F Friedrich Frischknecht (Heidelberg University Medical Faculty, Center for Infectious Diseases, Parasitology) I Isabelle Coppens C Carolina Barillas-Mury (Laboratory of Malaria and Vector Research, National Institute of Allergy and Infectious Diseases, National Institutes of Health) S Sabrina Absalon J José M. C. Ribeiro P Photini Sinnis J Joel Vega-Rodriguez

Abstract

Abstract Plasmodium sporozoites, the infective stage of malaria, must invade the mosquito salivary glands (SGs) before being transmitted to a vertebrate host. However, the physiological and biochemical effects of this invasion remain largely unexplored. We examined the impact of Plasmodium infection on Anopheles gambiae salivary glands using high-resolution proteomics, gene expression, and morphological analysis. The data reveal differential expression of various proteins, including the enrichment of hemolymph-derived humoral proteins in infected salivary glands. These proteins diffuse into the SGs due to structural damage caused by the sporozoites during invasion, while saliva proteins diffuse out into the circulation. Moreover, proteomic analysis of saliva from P. berghei – or P. falciparum –infected mosquitoes revealed changes in composition, with a pronounced reduction of immune proteins relative to uninfected mosquitoes. This reduction is likely due to the association of these proteins with the surface of sporozoites and/or changes in the saliva’s physical properties within the invaded salivary secretory cavities. The saliva protein profiles from mosquitoes infected with both Plasmodium species are remarkably similar, suggesting a conserved interaction between sporozoites and salivary glands. Our results provide a foundation for understanding the molecular interactions between Plasmodium sporozoites and mosquito salivary glands.

Article Details

Volume / Issue Vol. 16, Issue 1
Published November 20, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (21)

T

Thiago Luiz Alves e Silva

S

Sachi Kanatani

A

Ana Beatriz Barletta Ferreira

Laboratory of Malaria and Vector Research, National Institute of Allergy and Infectious Diseases, National Institutes of Health

C

Cindi L. Schwartz

B

Benjamin Liffner

O

Octavio A. C. Talyuli

J

Janet Olivas

B

Bianca M. Nagata

Z

Zarna Rajeshkumar Pala

T

Tales Pascini

D

Derron A. Alves

M

Ming Zhao

M

Motoshi Suzuki

L

Lilian P. Dorner

Heidelberg University Medical Faculty, Center for Infectious Diseases, Parasitology

F

Friedrich Frischknecht

Heidelberg University Medical Faculty, Center for Infectious Diseases, Parasitology

I

Isabelle Coppens

C

Carolina Barillas-Mury

Laboratory of Malaria and Vector Research, National Institute of Allergy and Infectious Diseases, National Institutes of Health

S

Sabrina Absalon

J

José M. C. Ribeiro

P

Photini Sinnis

J

Joel Vega-Rodriguez