CMKLR1 as a potential target of cardiometabolic disease in PLWH 2267392

R Ronald McMillan (Vanderbilt Univ. Med. Ctr) L Laventa Obare (Vanderbilt university medical center) V Victoria Stephens (Vanderbilt University Medical Center) K Kisyua Nthenge (Vanderbilt university medical center) X Xiuqi Zhang M Mona Mashayekhi (Vanderbilt university medical center) C Curtis Gabriel (Vanderbilt University, Nashville, Tennessee, United States) A Annet Kirabo J John Koethe (Vanderbilt University Medical Cente, Nashville, Tennessee, United States) S Samuel Bailin (Vanderbilt University Medical Cente, Nashville, Tennessee, United States) C Celestine Wanjalla (Vanderbilt university medical center)

Abstract

Abstract Introduction People living with HIV (PLWH) are at a greater risk of developing cardiometabolic diseases, including diabetes, compared with people without HIV (PWoH). Chemerin (RARRES2), regulates immunity and metabolism through its receptors CMKLR1 and CCRL2. We hypothesized that chemerin—CMKLR1 signaling is dysregulated in PLWH, contributing to metabolic disease. Methods We analyzed chemerin in the adipose tissue from 59 PWH (20 non-diabetic, 19 prediabetic, and 20 diabetic) in the HATIM cohort. Single-cell transcriptomic analysis was used to compare CMKLR1 expression based on HIV status and to identify differential gene expression in smooth muscle cells. Results CMKLR1 was highly expressed in stromal/myeloid cells, while RARRES2 was expressed in preadipocytes and vascular smooth muscle cells. Macrophage CMKLR1 expression was increased in PLWH with diabetes (P = 0.0002) compared to PWoH with diabetes, while CCRL2 trended higher (P = 0.09). Communication analysis showed HIV shifts signaling from structural/homeostatic pathways (COLLAGEN, CD99, ANNEXIN) toward inflammatory/metabolic axes (CHEMERIN, GAS6, ICAM). In the CHEMERIN pathway, preadipocytes predicted as the dominant senders. Intermediate macrophages and myofibroblasts were the principal receivers. Conclusion Chemerin—CMKLR1 signaling is upregulated in PLWH, particularly within inflammatory macrophages, suggesting enhanced immune—stromal crosstalk that may underlie the heightened risk of diabetes and cardiometabolic disease in this population. Funding Source n/a Topic Categories Immune Mechanisms of Human Disease (HUM)

Article Details

Volume / Issue Vol. 215, Issue Supplement_1
Published August 01, 2026
ISSN 0022-1767
Publisher American Association of Immunologists

Authors (11)

R

Ronald McMillan

Vanderbilt Univ. Med. Ctr

L

Laventa Obare

Vanderbilt university medical center

V

Victoria Stephens

Vanderbilt University Medical Center

K

Kisyua Nthenge

Vanderbilt university medical center

X

Xiuqi Zhang

M

Mona Mashayekhi

Vanderbilt university medical center

C

Curtis Gabriel

Vanderbilt University, Nashville, Tennessee, United States

A

Annet Kirabo

J

John Koethe

Vanderbilt University Medical Cente, Nashville, Tennessee, United States

S

Samuel Bailin

Vanderbilt University Medical Cente, Nashville, Tennessee, United States

C

Celestine Wanjalla

Vanderbilt university medical center