Photoreactive bioorthogonal lipid probes and their applications in mammalian biology
Literature Information
Karthik Shanbhag, Kavita Sharma, Siddhesh S. Kamat
Lipids are an important class of biological molecules that possess many critical physiological functions, which enable the optimal survival of all organisms, including humans. While the role of lipids in the formation of biological cellular membranes and as a source of energy is fairly well understood, the cellular signalling pathways that lipids modulate in mammals are, in comparison, poorly characterized mechanistically and/or largely unknown. In an effort to dissect these mammalian cellular pathways regulated by signalling lipids and map hitherto unknown protein–lipid interactions, the last two decades have seen tremendous progress in the development of multifunctional lipid probes that, in conjunction with well-established bioorthogonal chemistries and chemoproteomics platforms, has almost exponentially expanded our knowledge in this field. In this review, we focus on the various photoreactive bioorthogonal lipid probes described in the literature, and briefly summarize the different photo-crosslinking groups and bioorthogonal chemistries used by them. Furthermore, we report specific case examples of such photoreactive bioorthogonal lipid probes, and discuss the new biological pathways and insights that have emerged from their use through chemoproteomics in mammalian cells. Finally, we highlight the challenges associated with the use of lipid probes in biological systems, and highlight their importance in the discovery and mechanistic understanding of lipid signalling pathways in the years to come.
Related Literature
Biocompatible and pH-sensitive PEG hydrogels with degradable phosphoester and phosphoamide linkers end-capped with amine for controlled drug delivery
Lidong Zhang, Young-Il Jeong, Sudan Zheng, Sung Il Jang, Hongsuk Suh, Dae Hwan Kang, Il Kim
DOI: 10.1039/C2PY20755A
Electrochemical production of syngas from CO2 at pressures up to 30 bar in electrolytes containing ionic liquid
Sofia Messias, Miguel M. Sousa, Manuel Nunes da Ponte, Carmen M. Rangel, Tiago Pardal, Ana S. Reis Machado
DOI: 10.1039/C9RE00271E
Chiral polymeric microspheres grafted with optically active helical polymer chains: a new class of materials for chiral recognition and chirally controlled release
Ci Song, Chaohong Zhang, Fangjie Wang, Wantai Yang, Jianping Deng
DOI: 10.1039/C2PY20546G
Theoretical study of sensitive reactions in phenol decomposition
Luna Pratali Maffei, Matteo Pelucchi, Tiziano Faravelli, Carlo Cavallotti
DOI: 10.1039/C9RE00418A
Hydrogenolysis of lignin-derived aryl ethers to monomers over a MOF-derived Ni/N–C catalyst
Xing-Gang Si, Qing-Lu Song, Jing-Pei Cao, Rui-Yu Wang, Xian-Yong Wei
DOI: 10.1039/D0RE00040J
Kinetic study of esterification over structured ZSM-5-coated catalysts based on fluid flow situations in macrocellular foam materials
Xin Gao, Qiuyan Ding, Yan Wu, Yilai Jiao, Jinsong Zhang, Xingang Li, Hong Li
DOI: 10.1039/C9RE00445A
Catalyst Acquisition by Data Science (CADS): a web-based catalyst informatics platform for discovering catalysts
Yuzuru Tanaka
DOI: 10.1039/D0RE00098A
New insights into catalysis for Heck reactions with fine supported Pd particles
Lin Huang, Zhan Wang, Jozel Tan
DOI: 10.1039/C9RE00480G
Microfluidic surface-enhanced infrared spectroscopy with semiconductor plasmonics for the fingerprint region
Mario Bomers, Benoît Charlot, Franziska Barho, Antoine Chanuel, Aude Mezy, Laurent Cerutti, Fernando Gonzalez-Posada, Thierry Taliercio
DOI: 10.1039/C9RE00350A
You might also like
What is Ethyl 3-cyclohexylpropanoate (CAS: 10094-36-7)?
Ethyl 3-cyclohexylpropanoate is a clear, colorless to light yellow liquid with a...
How should waste containing 2-(Hydroxymethyl)-5-(methoxycarbonyl)-6-methyl-4-(2-nitrophenyl)nicotinic acid (CAS: 34783-31-8) be handled?
Waste containing 2-(Hydroxymethyl)-5-(methoxycarbonyl)-6-methyl-4-(2-nitrophenyl...
How should waste containing 2,4,6-Tris(pentafluoroethyl)-1,3,5-triazine (CAS: 858-46-8) be handled?
Waste containing 2,4,6-Tris(pentafluoroethyl)-1,3,5-triazine (CAS: 858-46-8) sho...
What precautions should be taken when handling Chloroac-nle-oh (CAS: 56787-36-1)?
When handling Chloroac-nle-oh (CAS: 56787-36-1), it is essential to wear appropr...
What industries use Ethyl 6-phenylimidazo[2,1-b][1,3]thiazole-3-carboxylate (CAS: 752244-05-6)?
Ethyl 6-phenylimidazo[2,1-b][1,3]thiazole-3-carboxylate is primarily used in the...
Are there alternatives to alpha-(2-Bromophenyl)benzylamine (CAS: 55095-15-3) in synthesis?
Alternatives to alpha-(2-Bromophenyl)benzylamine (CAS: 55095-15-3) in synthesis ...
How should waste containing 2-Chloro-5-methoxypyridine (CAS: 139585-48-1) be handled?
Waste containing 2-Chloro-5-methoxypyridine (CAS: 139585-48-1) should be managed...
What industries use 1-(4-Methoxyphenyl)-2,5-dimethyl-1H-pyrrole (CAS: 5044-27-9)?
1-(4-Methoxyphenyl)-2,5-dimethyl-1H-pyrrole (CAS: 5044-27-9) is used in various ...
Are there alternatives to 3-Bromo-5-(N-Boc)aminomethylisoxazole (CAS: 903131-45-3) in synthesis?
There are alternative reagents and compounds that can be used in the synthesis o...
What is Tungsten(IV) oxide (CAS: 12036-22-5)?
Tungsten(IV) oxide, also known as tungsten dioxide, is a chemical compound with ...















