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A chemical tool for blue light-inducible proximity photo-crosslinking in live cells.


ABSTRACT: We developed a proximity photo-crosslinking method (Spotlight) with a 4-azido-N-ethyl-1,8-naphthalimide (AzNP) moiety that can be converted to reactive aryl nitrene species using ambient blue light-emitting diode light. Using an AzNP-conjugated HaloTag ligand (VL1), blue light-induced photo-crosslinked products of various HaloTag-conjugated proteins of interest were detected in subcellular spaces in live cells. Chemical or heat stress-induced dynamic changes in the proteome were also detected, and photo-crosslinking in the mouse brain tissue was enabled. Using Spotlight, we further identified the host interactome of SARS-CoV-2 nucleocapsid (N) protein, which is essential for viral genome assembly. Mass analysis of the VL1-crosslinked product of N-HaloTag in HEK293T cells showed that RNA-binding proteins in stress granules were exclusively enriched in the cross-linked samples. These results tell that our method can reveal the interactome of protein of interest within a short distance in live cells.

SUBMITTER: Mishra PK 

PROVIDER: S-EPMC8790779 | biostudies-literature | 2022 Jan

REPOSITORIES: biostudies-literature

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A chemical tool for blue light-inducible proximity photo-crosslinking in live cells.

Mishra Pratyush Kumar PK   Kang Myeong-Gyun MG   Lee Hakbong H   Kim Seungjoon S   Choi Subin S   Sharma Nirmali N   Park Cheol-Min CM   Ko Jaewon J   Lee Changwook C   Seo Jeong Kon JK   Rhee Hyun-Woo HW  

Chemical science 20211210 4


We developed a proximity photo-crosslinking method (<i>Spotlight</i>) with a 4-azido-<i>N</i>-ethyl-1,8-naphthalimide (AzNP) moiety that can be converted to reactive aryl nitrene species using ambient blue light-emitting diode light. Using an AzNP-conjugated HaloTag ligand (VL1), blue light-induced photo-crosslinked products of various HaloTag-conjugated proteins of interest were detected in subcellular spaces in live cells. Chemical or heat stress-induced dynamic changes in the proteome were al  ...[more]

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