Quantitation of Thyroid Hormone Binding to Anti-Thyroxine Antibody Fab Fragment by Native Mass Spectrometry
Year of publication
2019
Authors
Thangaraj, Senthil K.; Arola, Henri; Tullila, Antti; Nevanen, Tarja K.; Rouvinen, Juha; Jänis, Janne
Abstract
<p>Thyroid hormones are important regulatory hormones, acting on nearly every cell in the body. The two main thyroid hormones are l-thyroxine (tetraiodo-l-thyronine, T<sub>4</sub>) and 3,3′,5-triiodo-l-thyronine (T<sub>3</sub>), which are produced in the thyroid gland and secreted into the blood stream. Other important thyroid hormone metabolites are 3,3′-diiodo-l-thyronine (T<sub>2</sub>) and l-thyronine (T<sub>0</sub>), which may show increased levels in circulation due to dietary iodine deficiency or other medical disorders. Owing to their central role in cellular functions, sensitive and specific detection methods for thyroid hormones are needed. In this work, native mass spectrometry (MS) was used to quantitate thyroid hormone binding to the anti-T<sub>4</sub> antibody Fab fragment. First, the binding affinity for T<sub>2</sub> was determined via direct ligand titration experiments. Then, the affinities for the other ligands were determined by competition experiments using T<sub>2</sub> as the "low-affinity" reference ligand. The highest affinity was measured for T<sub>3</sub>, followed by T<sub>4</sub>, T<sub>2</sub>, and T<sub>0</sub> (K<sub>d</sub> = 29, 3.4, and 260 nM and 130 μM, respectively). Thus, it is evident that the number and positions of the iodine substituents within the thyronine rings are important for the ligand binding affinity of anti-T<sub>4</sub> Fab. Surprisingly, structurally related tetrahalogen bisphenols were also able to bind to anti-T<sub>4</sub> Fab with nanomolar affinities.</p>
Show moreOrganizations and authors
Publication type
Publication format
Article
Parent publication type
Journal
Article type
Original article
Audience
ScientificPeer-reviewed
Peer-ReviewedMINEDU's publication type classification code
A1 Journal article (refereed), original researchPublication channel information
Open access
Open access in the publisher’s service
Yes
Open access of publication channel
Fully open publication channel
License of the publisher’s version
CC BY
Self-archived
No
Other information
Fields of science
Chemical sciences
Internationality of the publisher
International
Language
English
International co-publication
No
Co-publication with a company
No
DOI
10.1021/acsomega.9b02659
The publication is included in the Ministry of Education and Culture’s Publication data collection
Yes