Serum Immunoproteomics Combined With Pathological Reassessment of Surgical Specimens Identifies TCP-1ζ Autoantibody as a Potential Biomarker in Thyroid Neoplasia

Author:

Belousov Pavel V.1,Bogolyubova Apollinariya V.12,Kim Yan S.1,Abrosimov Alexander Y.34,Kopylov Arthur T.5,Tvardovskiy Andrey A.6,Lanshchakov Kirill V.7,Sazykin Alexei Y.1,Dvinskikh Nina Y.8,Bobrovskaya Yana I.1,Selivanova Lilia S.3,Shilov Evgeniy S.1,Schwartz Anton M.9,Shebzukhov Yuriy V.10,Severskaia Natalya V.8,Vanushko Vladimir E.7,Moshkovskii Sergei A.11,Nedospasov Sergei A.12610,Kuprash Dmitry V.19

Affiliation:

1. Department of Immunology (P.V.B., A.V.B., Y.S.K., A.Y.S., Y.I.B., E.S.S., S.A.N., D.V.K.) Biological Faculty, Lomonosov Moscow State University, 119991 Moscow, Russia

2. Laboratory of Molecular Mechanisms of Immunity (A.V.B., S.A.N.), Engelhardt Institute of Molecular Biology, Russian Academy of Sciences, 119991 Moscow, Russia

3. Department of Pathomorphology (A.Y.A., L.S.S.), Endocrinology Research Center, 117036 Moscow, Russia

4. Acousto-Optical Research Center (A.Y.A.), National University of Science & Technology “MISIS,” 119049 Moscow, Russia

5. Laboratory of Systems Biology (A.T.K.), Institute of Biomedical Chemistry, 119121 Moscow, Russia

6. Department of Molecular Immunology (A.A.T., S.A.N.), A. N. Belozersky Institute of Physico-Chemical Biology, Lomonosov Moscow State University, 119992 Moscow, Russia

7. Department of Surgery (K.V.L., V.E.V.), Endocrinology Research Center, 117036 Moscow, Russia

8. Medical Radiology Research Center (N.Y.D., N.V.S.), 249036 Obninsk, Russia

9. Laboratory of Intracellular Signaling in Health and Disease (A.M.S., D.V.K.), Engelhardt Institute of Molecular Biology, Russian Academy of Sciences, 119991 Moscow, Russia

10. German Rheumatism Research Center (Y.V.S., S.A.N.), a Leibniz Institute, 10117 Berlin, Germany

11. Laboratory of Personalized Medicine (S.A.M.), Institute of Biomedical Chemistry, 119121 Moscow, Russia

Abstract

Context: Current methods of preoperative diagnostics frequently fail to discriminate between benign and malignant thyroid neoplasms. In encapsulated follicular-patterned tumors (EnFPT), this discrimination is challenging even using histopathological analysis. Autoantibody response against tumor-associated antigens is a well-documented phenomenon with prominent diagnostic potential; however, autoantigenicity of thyroid tumors remains poorly explored. Objectives: Objectives were exploration of tumor-associated antigen repertoire of thyroid tumors and identification of candidate autoantibody biomarkers capable of discrimination between benign and malignant thyroid neoplasms. Design, Setting, and Patients: Proteins isolated from FTC-133 cells were subjected to two-dimensional Western blotting using pooled serum samples of patients originally diagnosed with either papillary thyroid carcinoma (PTC) or EnFPT represented by apparently benign follicular thyroid adenomas, as well as healthy individuals. Immunoreactive proteins were identified using liquid chromatography-tandem mass-spectrometry. Pathological reassessment of EnFPT was performed applying nonconservative criteria for capsular invasion and significance of focal PTC nuclear changes (PTC-NCs). Recombinant T-complex protein 1 subunitζ (TCP-1ζ) was used to examine an expanded serum sample set of patients with various thyroid neoplasms (n = 89) for TCP-1ζ autoantibodies. All patients were included in tertiary referral centers. Results: A protein demonstrating a distinct pattern of EnFPT-specific seroreactivity was identified as TCP-1ζ protein. A subsequent search for clinicopathological correlates of TCP-1ζ seroreactivity revealed nonclassical capsular invasion or focal PTC-NC in all TCP-1ζ antibody-positive cases. Further studies in an expanded sample set confirmed the specificity of TCP-1ζ autoantibodies to malignant EnFPT. Conclusions: We identified TCP-1ζ autoantibodies as a potential biomarker for presurgical discrimination between benign and malignant encapsulated follicular-patterned thyroid tumors. Our results suggest the use of nonconservative morphological criteria for diagnosis of malignant EnFPT in biomarker identification studies and provide a peculiar example of uncovering the diagnostic potential of a candidate biomarker using incorporation of pathological reassessment in the pipeline of immunoproteomic research.

Publisher

The Endocrine Society

Subject

Biochemistry (medical),Clinical Biochemistry,Endocrinology,Biochemistry,Endocrinology, Diabetes and Metabolism

Reference49 articles.

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