| Literature DB >> 22949880 |
Florian Weiland1, Karina Martin1, Martin K Oehler2, Peter Hoffmann1.
Abstract
The ovarian cancer biomarker CA125 has been extensively investigated over the last 30 years. The knowledge about the exact molecular nature of this protein, however, remains fragmented. This review provides an overview of the structural research regarding CA125, and presents an orthogonal verification method to confirm the identity of this molecule. The need for independent identification of CA125 is exemplified by several reports where mutually exclusive data concerning the existence of isoforms and the glycan moieties is presented. Mass spectrometry can overcome the pitfalls of a single detection/identification method such as antibody probing. Independent verification of CA125 identity in characterization studies will help establish a refined model of its molecular structure that will promote the development of new approaches for diagnosis, prognosis and therapy of ovarian cancer.Entities:
Keywords: CA125; MUC16; biomarker; mass spectrometry; ovarian cancer
Mesh:
Substances:
Year: 2012 PMID: 22949880 PMCID: PMC3431878 DOI: 10.3390/ijms130810568
Source DB: PubMed Journal: Int J Mol Sci ISSN: 1422-0067 Impact factor: 6.208
Features described from the CA125 amino acid sequence based on the data of O’Brien [18,21], Yin [17], Maeda [22] and Berman [23]; Amino acid (aa) number (numbering derived from [18]) indicates the position of those residues as they appear within the respective domain. bp: base pairs.
| Domain | Carboxy Domain | Repeat Domain | Amino Domain |
|---|---|---|---|
| Features | |||
| Exons | 9 | 5 | 9 |
| Nucleotides (bp) | 14,000 | Single: 1900 | 50,950 |
| Amino Acids (aa) | 284 | Single: 156 | 12,068 |
| Molecular Characteristics | Stop CodonPoly A Signal | SEA domain | Serine/Threonine Rich(Abundant |
Figure 1Schematic of CA125. (A) A diagrammatic overview of the molecular structure of CA125 as described by O’Brien et al. [18,21]; (B) A typical repeat unit of 156 amino acids and the possible features assigned to this sequence. At least 60 repeats have been identified, of which 45 are unique sequences, giving rise to a minimum domain length of 9800 aa [18]. Serine/Threonine rich region downstream of SEA domain was unspecified [18], O-glycosylation potential of a randomly chosen repeat unit (aa 14,255–14,410) was determined by submission to NetOGlyc 3.1 Server [25] (aa 131–156); (C) Carboxy terminal domain: aa 21,869–22,152 (length: 284 aa) [18] (aa numbering according to UniProt [26]).