scholarly journals New Cationic fac-[Re(CO)3(deeb)B2]+ Complex, Where B2 Is a Benzimidazole Derivative, as a Potential New Luminescent Dye for Proteins Separated by SDS-PAGE

2021 ◽  
Vol 9 ◽  
Author(s):  
Alexander Carreño ◽  
Manuel Gacitúa ◽  
Eduardo Solis-Céspedes ◽  
Dayán Páez-Hernández ◽  
Wesley B. Swords ◽  
...  

Sodium-dodecyl-sulfate polyacrylamide gel electrophoresis (SDS-PAGE) can be used to separate proteins based mainly on their size such as in denaturing gels. Different staining methods have been reported to observe proteins in the gel matrix, where the most used dyes are generally anionic. Anionic dyes allow for interactions with protonated amino acids, retaining the dye in the proteins. Fluorescent staining is an alternative technique considered to be sensitive, safe, and versatile. Some anionic complexes based on d6 transition metals have been used for this purpose, where cationic dyes have been less explored in this context. In this work, we synthesized and characterized a new monocationic rhenium complex fac-[Re(CO)3(deeb)B2]+ (where deeb is 4,4′-bis(ethoxycarbonyl)-2,2′-bpy and B2 is 2,4-di-tert-butyl-6-(3H-imidazo[4,5-c]pyridine-2-yl)phenol). We carried out a structural characterization of this complex by MS+, FTIR, 1H NMR, D2O exchange, and HHCOSY. Moreover, we carried out UV-Vis, luminescence, and cyclic voltammetry experiments to understand the effect of ligands on the complex’s electronic structure. We also performed relativistic theoretical calculations using the B3LYP/TZ2P level of theory and R-TDDFT within a dielectric continuum model (COSMO) to better understand electronic transitions and optical properties. We finally assessed the potential of fac-[Re(CO)3(deeb)B2]+ (as well as the precursor fac-Re(CO)3(deeb)Br and the free ligand B2) to stain proteins separated by SDS-PAGE. We found that only fac-[Re(CO)3(deeb)B2]+ proved viable to be directly used as a luminescent dye for proteins, presumably due to its interaction with negatively charged residues in proteins and by weak interactions provided by B2. In addition, fac-[Re(CO)3(deeb)B2]+ seems to interact preferentially with proteins and not with the gel matrix despite the presence of sodium dodecyl sulfate (SDS). In future applications, these alternative cationic complexes might be used alone or in combination with more traditional anionic compounds to generate counterion dye stains to improve the process.

2000 ◽  
Vol 7 (4) ◽  
pp. 617-624 ◽  
Author(s):  
Zhongxing Liang ◽  
Didier Raoult

ABSTRACT Bartonella species can be differentiated by microimmunofluorescence assay, sodium dodecyl sulfate polyacrylamide gel electrophoresis (SDS-PAGE), and immunoblotting with murine polyclonal antisera to Bartonella henselae, B. quintana, B. elizabethae, and B. bacilliformis. A pairwise comparison on the basis of SDS-PAGE protein profiles demonstrated similarity values for proteins of different Bartonella species ranging from 28.6 to 86.4%. Antigenic relationships revealed by immunoblotting with murine antisera were equivalent to those of proteins observed by SDS-PAGE. A dendrogram obtained on the basis of protein bands of SDS-polyacrylamide gels showed that Bartonella species could be divided into three groups. B. bacilliformis was distinct from all otherBartonella species; B. grahamii, B. taylorii, B. doshiae, and B. vinsoniiformed a cluster, as did B. henselae, B. quintana, B. elizabethae, and B. clarridgeiae. These relationships were consistent with those revealed by parsimony trees derived from 16S rRNA and gltAgene sequencing. SDS-PAGE analysis showed that 120-, 104-, 85-, 71-, 54-, 47-, 40-, 33-, 30-, and 19-kDa proteins were present in all species, with the 54-kDa protein being the most dominant. Proteins with a molecular mass of less than 54 kDa allow the differentiation of species and are a possible target for future species-specific antibodies and antigens.


2014 ◽  
Vol 104 (5) ◽  
pp. 639-651 ◽  
Author(s):  
J.T. Oh ◽  
J.H. Epler ◽  
C.S. Bentivegna

AbstractStudying aquatic benthic macroinvertebrates (BMIs) in the field requires accurate taxonomic identification, which can be difficult and time consuming. Conventionally, head capsule morphology has been used to identify wild larvae of Chironomidae. However, due to the number of species and possible damage and/or deformity of their head capsules, another supporting approach for identification is needed. Here, we provide hemoglobin (Hb) protein in hemolymph of chironomids as a new biomarker that may help resolve some of the ambiguities and difficulties encountered during taxonomic identification. Chironomids collected from two locations in Maine and New Jersey, USA were identified to the genus level and in some cases to the species-level using head capsule and body morphologies. The head capsule for a particular individual was then associated with a corresponding Hb protein profile generated from sodium dodecyl sulfate polyacrylamide gel electrophoresis (SDS–PAGE). Distinct Hb profiles were observed from one group (Thienemannimyia) and four genera (Chironomus, Cricotopus, Dicrotendipes, and Glyptotendipes) of chironomids. Several species were polymorphic, having more than one Hb profile and/or having bands of the same size as those of other species. However, major bands and the combination of bands could distinguish individuals at the genus and sometimes species-level. Overall, this study showed that Hb profiles can be used in combination with head capsule morphology to identify wild chironomids.


WARTA AKAB ◽  
2021 ◽  
Vol 44 (2) ◽  
Author(s):  
Alvina Nur Aini

Perbedaan proses penyembelihan dapat mempengaruhi respon fisiologis hewan yang dapat diidentifikasi melalui pola ekspresi protein. Dalam penelitian ini dilakukan analisis awal protein daging untuk menganalisis pengaruh perbedaan metode penyembelihan, yaitu metode halal dan nonhalal. Penelitian menggunakan enam ekor tikus Wistar sebagai hewan uji. Kelompok uji pertama diberi perlakuan penyembelihan dengan metode halal, yaitu dengan pemotongan pembuluh darah pada leher hewan. Kelompok kedua diberi perlakuan penyembelihan secara nonhalal, yaitu dilakukan metode dislokasi servikal. Analisis profil protein daging dilakukan dengan menggunakan Sodium Dodecyl Sulfate Polyacrylamide Gel Electrophoresis (SDS-PAGE). Hasil SDS-PAGE menunjukkan beberapa pita protein tereskpresi pada berat molekul 116; 55; 48; 45; 41; 26; dan 17 kDa (kiloDalton), sedangkan hasil kuantifikasi pita protein menunjukkan sampel protein daging hasil penyembelihan nonhalal memiliki kuantitas lebih tinggi daripada sampel protein daging hasil penyembelihan halal. Kuantitas protein yang lebih tinggi pada penyembelihan nonhalal diduga karena lepasnya protein tertentu ke dalam sistem metabolisme hewan sebagai akibat dari respon stres yang diberikan.Kata kunci: elektroforesis; halal; nonhalal; protein; SDS-PAGE


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