scH16S‐Seq Maps Klebsiella pneumoniae ‐Associated Myeloid States and Reveals a CD38–NAD Immunometabolic Axis That Impairs Lysosomal Acidification in Sepsis

ABSTRACT Sepsis arises from heterogeneous host‐cell states that influence bacterial clearance, yet single‐cell transcriptomic approaches do not directly connect microbial signals with host transcriptional programs. This study introduces single‐cell host–bacterial 16S co‐sequencing (scH16S‐seq), which couples host transcriptomes with barcode‐resolved bacterial 16S‐derived UMI signals to resolve bacterial signal‐enriched host‐cell states. Applied to Klebsiella pneumoniae (KP) sepsis, scH16S‐seq mapped cell‐associated bacterial 16S‐derived signals to discrete CD38 + myeloid states, including Acod1 + monocyte‐derived macrophages, Lyve1 + interstitial macrophages, and hypoxic neutrophils sharing inflammatory, hypoxic, and metabolically stressed programs. Increased myeloid CD38 expression is also observed across human sepsis cohorts. Mechanistically, KP induces CD38‐associated NAD + depletion, mitochondrial bioenergetic failure, reduced ATP, and impaired lysosomal acidification. CD38 inhibition, NAD‐related metabolic intervention, or Cd38 deficiency restores NAD homeostasis and mitochondrial function, whereas blockade of mitochondrial ATP synthesis or V‐ATPase‐dependent acidification attenuates lysosomal and antibacterial rescue. Lyz2‐Cre‐mediated Cd38 deletion improves bacterial control and sepsis outcomes in vivo. Together, scH16S‐seq resolves KP 16S signal‐enriched myeloid states and identifies a targetable CD38–NAD–mitochondrial–lysosomal axis linking immunometabolic dysfunction to impaired antibacterial defense in sepsis.

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Publication Details

Journal
Advanced Science
Published
2026-09-30
DOI
https://doi.org/10.1002/advs.78127
Primary Topic
Neutrophil, Myeloperoxidase and Oxidative Mechanisms
Type
article
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article

scH16S‐Seq Maps Klebsiella pneumoniae ‐Associated Myeloid States and Reveals a CD38–NAD Immunometabolic Axis That Impairs Lysosomal Acidification in Sepsis

Xiuwen Wu, Juanhan Liu, Tao Zheng, Fang Qin et al.
Advanced Science
Neutrophil, Myeloperoxidase and Oxidative Mechanisms
article

scH16S‐Seq Maps Klebsiella pneumoniae ‐Associated Myeloid States and Reveals a CD38–NAD Immunometabolic Axis That Impairs Lysosomal Acidification in Sepsis

Xiuwen Wu, Juanhan Liu, Tao Zheng, Fang Qin, Yun Zhao, Xuanheng Li, Peizhao Liu, Jianan Ren, Yilong Yu, Yangguang Li, Jiayang Li, Sicheng Li, Songqi Jing, Haiqing Liu, Jianghao Zou, Shenxing Li
article en

Abstract

ABSTRACT Sepsis arises from heterogeneous host‐cell states that influence bacterial clearance, yet single‐cell transcriptomic approaches do not directly connect microbial signals with host transcriptional programs. This study introduces single‐cell host–bacterial 16S co‐sequencing (scH16S‐seq), which couples host transcriptomes with barcode‐resolved bacterial 16S‐derived UMI signals to resolve bacterial signal‐enriched host‐cell states. Applied to Klebsiella pneumoniae (KP) sepsis, scH16S‐seq mapped cell‐associated bacterial 16S‐derived signals to discrete CD38 + myeloid states, including Acod1 + monocyte‐derived macrophages, Lyve1 + interstitial macrophages, and hypoxic neutrophils sharing inflammatory, hypoxic, and metabolically stressed programs. Increased myeloid CD38 expression is also observed across human sepsis cohorts. Mechanistically, KP induces CD38‐associated NAD + depletion, mitochondrial bioenergetic failure, reduced ATP, and impaired lysosomal acidification. CD38 inhibition, NAD‐related metabolic intervention, or Cd38 deficiency restores NAD homeostasis and mitochondrial function, whereas blockade of mitochondrial ATP synthesis or V‐ATPase‐dependent acidification attenuates lysosomal and antibacterial rescue. Lyz2‐Cre‐mediated Cd38 deletion improves bacterial control and sepsis outcomes in vivo. Together, scH16S‐seq resolves KP 16S signal‐enriched myeloid states and identifies a targetable CD38–NAD–mitochondrial–lysosomal axis linking immunometabolic dysfunction to impaired antibacterial defense in sepsis.

Advanced Science
Singleron Biotechnologies (china) (CN), Shanghai First People's Hospital (CN), Jinling Institute of Technology (CN), Nanjing Medical University (CN)
Openalex Percentile: Top 19%
Neutrophil, Myeloperoxidase and Oxidative Mechanisms
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