PubMed Health⌕ Search

PubMed · 12781069

Immunity against soft-tissue sarcomas.

Abstract

Recent advances in basic medical sciences have led to a deeper understanding of the molecular characteristics of soft-tissue sarcomas. Likewise, novel technologies have led to a better appreciation of the relationship between an antigenic stimulus and the subsequent immune response against the antigen. In the past few years, the intersection of the understanding of the immune system and the knowledge of sarcoma biology has become apparent. As seen with other forms of cancer, there is a detectable autologous immune response against sarcomas. It is the hope of many investigators that the hints of a tumor-specific immune response will be enough to generate a signal that can be amplified and directed against the host sarcoma. The data regarding the initial evidence of immune responses against sarcomas are reviewed in the context of current or potential clinical studies.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Robert G Maki. 2003. Immunity against soft-tissue sarcomas.. https://doi.org/10.1007/s11912-003-0067-x

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

A proteomic study of SUMO-2 target proteins.

The SUMO family in vertebrates includes at least three distinct proteins (SUMO-1, -2, and -3) that are added as post-translational modifications to target proteins. A considerable number of SUMO-1 target proteins have been identified, but little is known about SUMO-2. A stable HeLa cell line expressing His6-tagged SUMO-2 was established and used to label and purify novel endogenous SUMO-2 target proteins. Tagged forms of SUMO-2 were functional and localized predominantly in the nucleus. His6-tagged SUMO-2 conjugates were affinity-purified from nuclear fractions and identified by mass spectrometry. Eight novel potential SUMO-2 target proteins were identified by at least two peptides. Three of these proteins, SART1, heterogeneous nuclear ribonucleoprotein (RNP) M, and the U5 small nuclear RNP 200-kDa helicase, play a role in RNA metabolism. SART1 and heterogeneous nuclear RNP M were both shown to be genuine SUMO targets, confirming the validity of the approach.

Antigens, Neoplasm↗

Aberrant expression of minichromosome maintenance protein-2 and Ki67 in laryngeal squamous epithelial lesions.

Histological classification of laryngeal epithelial lesions is highly subjective, and methods of cytological detection are not well developed. Improved determination of aberrant cell cycle entry may allow increased objectivity in histological assessment and enable the development of less invasive diagnostic cytology tests. Sections of normal larynx (n=10), laryngeal dysplasia (n=20) and laryngeal squamous cell carcinoma (SCC) (n=10) were classified according to the Ljubljana classification and stained for markers of cell cycle entry, minichromosome maintenance protein-2 (Mcm-2) and Ki67. Expression patterns were compared using double labelling confocal microscopy. There was a correlation between Mcm-2 and Ki67 labelling indices (rho=0.93; 95% CI [0.84, 0.97]) and both markers showed increased expression from normal epithelium to SCC (Mcm-2, P=0.001; Ki67, P=0.0002). Importantly, there was minimal expression of Mcm-2 or Ki67 in the most superficial layers of normal larynx and abnormal or atypical hyperplasia, in contrast to carcinoma in situ and SCC. Clusters of Mcm-2/5-positive cells were present in cytological preparations from SCC, but not from those showing atypical hyperplasia or inflammation in non-neoplastic tissue. Minichromosome maintenance protein-2 staining may increase the objectivity and reliability of histological grading of laryngeal epithelial lesions. Laryngeal brushings, combined with immuno-enhanced liquid-based cytology, could be useful, as a less invasive approach, to the detection of laryngeal malignant and premalignant lesions.

Antigens, Neoplasm↗

Modulation of DNA topoisomerase II alpha promoter activity by members of the Sp (specificity protein) and NF-Y (nuclear factor Y) families of transcription factors.

Topo IIalpha (topoisomerase IIalpha) is a major target of several commonly used anticancer drugs and is subject to down-regulation at the transcriptional level in some drug-resistant cell lines and tumours in response to chemotherapy. Clinical resistance to such drugs has been correlated with down-regulation of topo IIalpha at transcription in some drug-resistant cell lines and tumours. Putative binding sites for a variety of transcription factors, including Sp1 (specificity protein 1) and NF-Y (nuclear factor Y) have previously been identified in the topo IIalpha promoter, but their functional significance and interactions have not been described following exposure to anti-cancer drugs. The binding of these factors to specific putative regulatory elements in the topo IIalpha promoter was studied using electrophoretic-mobility-shift assays. Sp1 was found to bind strongly to both distal and proximal GC-rich elements and NF-Y to ICB1 (the first inverted CCAAT box). The functional significance of transcription-factor binding was studied using transient transfection of HeLa cells using a luciferase reporter driven by a 617-bp minimal promoter containing point mutations in putative regulatory elements. Sp1 and NF-Y were both found to be transcriptional modulators with activator or repressor functions depending on protein/DNA context. Moreover, a functional interaction between Sp1 and NF-Y bound at proximal elements was observed.

Antigens, Neoplasm↗