Rational design of far red to near-infrared rhodamine analogues with huge Stokes shifts for single-laser excitation multicolor imaging

Author(s):  
Xingxing Zhang ◽  
Tianbing Ren ◽  
Feiyu Yang ◽  
Lin Yuan
2021 ◽  
Vol 4 (1) ◽  
Author(s):  
Yusaku Hontani ◽  
Mikhail Baloban ◽  
Francisco Velazquez Escobar ◽  
Swetta A. Jansen ◽  
Daria M. Shcherbakova ◽  
...  

AbstractNear-infrared fluorescent proteins (NIR FPs) engineered from bacterial phytochromes are widely used for structural and functional deep-tissue imaging in vivo. To fluoresce, NIR FPs covalently bind a chromophore, such as biliverdin IXa tetrapyrrole. The efficiency of biliverdin binding directly affects the fluorescence properties, rendering understanding of its molecular mechanism of major importance. miRFP proteins constitute a family of bright monomeric NIR FPs that comprise a Per-ARNT-Sim (PAS) and cGMP-specific phosphodiesterases - Adenylyl cyclases - FhlA (GAF) domain. Here, we structurally analyze biliverdin binding to miRFPs in real time using time-resolved stimulated Raman spectroscopy and quantum mechanics/molecular mechanics (QM/MM) calculations. Biliverdin undergoes isomerization, localization to its binding pocket, and pyrrolenine nitrogen protonation in <1 min, followed by hydrogen bond rearrangement in ~2 min. The covalent attachment to a cysteine in the GAF domain was detected in 4.3 min and 19 min in miRFP670 and its C20A mutant, respectively. In miRFP670, a second C–S covalent bond formation to a cysteine in the PAS domain occurred in 14 min, providing a rigid tetrapyrrole structure with high brightness. Our findings provide insights for the rational design of NIR FPs and a novel method to assess cofactor binding to light-sensitive proteins.


Cytometry ◽  
1992 ◽  
Vol 13 (7) ◽  
pp. 782-786 ◽  
Author(s):  
M. Kubbies ◽  
B. Goller ◽  
D. R. Van Bockstaele

2018 ◽  
Vol 54 (55) ◽  
pp. 7625-7628 ◽  
Author(s):  
Yibin Zhang ◽  
Shuai Xia ◽  
Mingxi Fang ◽  
Wafa Mazi ◽  
Yanbo Zeng ◽  
...  

New near-infrared rhodamine dyes with large Stokes shifts were developed and applied for sensitive detection of cellular pH changes and fluctuations by incorporating an additional amine group with fused rings.


Heterocycles ◽  
2020 ◽  
Vol 101 (2) ◽  
pp. 559
Author(s):  
Hideko Nagasawa ◽  
Kensuke Okuda ◽  
Bahaa G. M. Youssif ◽  
Ryosuke Sakai ◽  
Takahiro Ueno ◽  
...  

2019 ◽  
Vol 9 (3) ◽  
pp. 166-217 ◽  
Author(s):  
Gangadharan A. Kumar

In this review, we discuss the rational design of a new class of lanthanide-doped organometallic nanostructured materials called `molecular minerals`. Molecular minerals are nanostructured materials with a ceramic core made from chalcogenide groups and other heavy metals. Part of the central core atoms is replaced by suitable lanthanide atoms to impart fluorescent spectral properties. The ceramic core is surrounded by various types of organic networks thus making the structure partly ceramic and organic. The central core has superior optical properties and the surrounding organic ligand makes it easy to dissolve several kinds of organic solvents and fluoropolymers to make several kinds of active and passive photonic devices. This chapter starts with elaborate design strategies of lanthanidebased near-infrared emitting materials followed by the experimental results of selected near-infrared emitting lanthanide clusters. Finally, their potential applications in telecommunication, light-emitting diodes and medical imaging are discussed.


2019 ◽  
Vol 6 (21) ◽  
pp. 1901714 ◽  
Author(s):  
Chih‐I Chen ◽  
Shengfan Wu ◽  
Yen‐An Lu ◽  
Chia‐Chen Lee ◽  
Kuo‐Chuan Ho ◽  
...  

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