<i>Plasmodium knowlesi</i> can adapt to infect Duffy-negative erythrocytes

M Maria Zinga A Amy Ibrahim F Franziska Mohring (3Department of Infection Biology, Faculty of Infectious and Tropical Diseases, London School of Hygiene & Tropical Medicine, London, United Kingdom) S Sittinont Chainarin (4Mahidol Vivax Research Unit, Faculty of Tropical Medicine, Mahidol University, Bangkok, Thailand) T Thorey K. Jonsdottir (3Department of Infection Biology, Faculty of Infectious and Tropical Diseases, London School of Hygiene & Tropical Medicine, London, United Kingdom) S Sutharinee Ngernna (1Department of Molecular Tropical Medicine and Genetics, Faculty of Tropical Medicine, Mahidol University, Bangkok, Thailand) B Brian Amabilino-Perez (5Department of Biochemistry, University of Oxford, Oxford, United Kingdom) T Tossapol Pholcharee A Anna Turkiewicz (3Department of Infection Biology, Faculty of Infectious and Tropical Diseases, London School of Hygiene & Tropical Medicine, London, United Kingdom) S Susana Campino T Taane G. Clark J Jun Miao (Institute of Solid State Chemistry) L Liwang Cui W Wanlapa Roobsoong (4Mahidol Vivax Research Unit, Faculty of Tropical Medicine, Mahidol University, Bangkok, Thailand) J Jetsumon Sattabongkot R Robert W. Moon (3Department of Infection Biology, Faculty of Infectious and Tropical Diseases, London School of Hygiene & Tropical Medicine, London, United Kingdom) W Wang Nguitragool

Abstract

Abstract Plasmodium knowlesi, a zoonotic malaria species, has become a significant public health concern in Southeast Asia. In regions such as Malaysia and southern Thailand, P knowlesi incidence has risen, even as other human malaria parasites are nearing elimination. Similar to its close relative Plasmodium vivax, P knowlesi relies on the Duffy antigen receptor for chemokine (DARC) as a key receptor for erythrocyte invasion. Only Duffy-positive individuals are thought to be susceptible to clinical infection. Here, we demonstrate that P knowlesi possesses greater invasion plasticity than previously recognized. This parasite can bypass the need for DARC, as shown by its in vitro adaptation to invade and replicate within Duffy-negative (Fy−) erythrocytes. This adaptation is stable and independent of DARC binding, enabling the adapted parasite line to be maintained in Fy− erythrocytes and to resist inhibition by α-DARC antibodies. Genomic analysis identified a genomic recombination event between the parasite's dbpα and dbpγ genes, resulting in a new chimeric gene dbpαγ. Using CRISPR-Cas9 targeted reversion, we could demonstrate that dbpαγ is essential for invasion of Fy− erythrocytes. These findings shed new light on the invasion plasticity of P knowlesi, with implications for the parasite’s potential spread beyond Southeast Asia and for understanding the complex host-cell specificity and atypical invasion pathways seen in P vivax.

Article Details

Journal Blood
Volume / Issue Vol. 147, Issue 18
Published April 30, 2026
Pages 2132-2142
ISSN 0006-4971
Publisher Elsevier BV

Journal Info

Blood

Elsevier BV

ISSN: 0006-4971 Health Sciences

Authors (17)

M

Maria Zinga

A

Amy Ibrahim

F

Franziska Mohring

3Department of Infection Biology, Faculty of Infectious and Tropical Diseases, London School of Hygiene & Tropical Medicine, London, United Kingdom

S

Sittinont Chainarin

4Mahidol Vivax Research Unit, Faculty of Tropical Medicine, Mahidol University, Bangkok, Thailand

T

Thorey K. Jonsdottir

3Department of Infection Biology, Faculty of Infectious and Tropical Diseases, London School of Hygiene & Tropical Medicine, London, United Kingdom

S

Sutharinee Ngernna

1Department of Molecular Tropical Medicine and Genetics, Faculty of Tropical Medicine, Mahidol University, Bangkok, Thailand

B

Brian Amabilino-Perez

5Department of Biochemistry, University of Oxford, Oxford, United Kingdom

T

Tossapol Pholcharee

A

Anna Turkiewicz

3Department of Infection Biology, Faculty of Infectious and Tropical Diseases, London School of Hygiene & Tropical Medicine, London, United Kingdom

S

Susana Campino

T

Taane G. Clark

J

Jun Miao

Institute of Solid State Chemistry

L

Liwang Cui

W

Wanlapa Roobsoong

4Mahidol Vivax Research Unit, Faculty of Tropical Medicine, Mahidol University, Bangkok, Thailand

J

Jetsumon Sattabongkot

R

Robert W. Moon

3Department of Infection Biology, Faculty of Infectious and Tropical Diseases, London School of Hygiene & Tropical Medicine, London, United Kingdom

W

Wang Nguitragool