| Literature DB >> 30368951 |
So Eun Kim1, Kwang Yeon Hwang1, Ki Hyun Nam1,2.
Abstract
Fluorescent proteins (FPs) possess a wide variety of spectral properties that make them of widespread interest as optical markers. These proteins can be applied as pH indicators or metal biosensors. The discovery and characterization of new fluorescent proteins is expected to further extend their application. Here, we report the spectral and structural analysis of a red fluorescent protein from Acropora digitifera (designated AdRed). This protein shows a tetrameric state and is red emitting, with excitation and emission maxima at 567 and 612 nm, respectively. Its crystal structure shows the tetrameric interface stabilized by hydrogen bonding and salt bridges. The electron density map of the chromophore, consisting of Asp66-Tyr67-Gly68, shows the decarboxylated side chain of Asp66. Ser223, located near the chromophore, has the role of bridging His202 and Glu221, and is part of the hydrogen bond network. Mutated AdRed with Cys148Ser reveals a blue shift in fluorescence excitation and emission. Our results provide insights into understanding the molecular function of AdRed and other FPs.Entities:
Keywords: zzm321990Acropora digitifera; chromophore; decarboxylation; fluorescent protein; mutagenesis
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Year: 2018 PMID: 30368951 PMCID: PMC6319757 DOI: 10.1002/pro.3540
Source DB: PubMed Journal: Protein Sci ISSN: 0961-8368 Impact factor: 6.725