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◆ Research square2026-08-28

WTR: A Toolkit for Functional Anterograde Transsynaptic Circuit Mapping.

Tongfei Wang, Chao Chen, Ruogu Liu, Aijia Yi-Luo, Xiaoyan Cao, Jitao Hu, Shikang Guan, Si-Yuan Chang, Xiaoli Cui, Wei Zhou, Fei Zhao, Chun-Teng Huang, Xin Duan, Lily Jan

原始摘要(英文原文)· Original abstract
The brain coordinates animal physiology and behavior via neuronal circuits. To understand and simulate brain functions, it is essential to delineate the synaptic connectivity between neurons. Transsynaptic tracers serve as powerful tools for such purposes. In response to the demand for anterograde tracers for circuit mapping and functional interrogation, we developed WTR, a fusion protein of mammalian codon-optimized WGA, TEV-protease cleavage sequence, and Recombinase. WTR expressed via AAV vectors in cell-type-specific starter neurons reaches their postsynaptic neurons and releases Cre/Flpo upon exposure to TEV-protease expressed in downstream neurons. Accompanied by Cre/Flpo-dependent expression of EGFP, GCaMP7s, or ChR2, the toolkit enables labeling, recording, or manipulation of downstream neurons. We utilized WTR to characterize downstream neurons of either glutamatergic or GABAergic neurons in the preoptic area of anterior hypothalamus for their differential actions in thermoregulation or stress responses, respectively. These results establish WTR as a versatile platform for functional anterograde circuit mapping.
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WTR: A Toolkit for Functional Anterograde Transsynaptic Circuit Mapping. — 科研速览 Science Skim