Abstract
The Drosophila sine oculis (so) gene is a high hierarchy and essential gene in the developmental pathway of the fly visual system. so is the founder member of the SIX family, which in the fly also includes the genes D-six3 (optix) and D-six4 and in vertebrates, the SIX1, SIX2, SIX3, SIX4, SIX5 and SIX6 genes. In addition to a homeobox domain, all members of the SIX family of proteins contain a characteristic highly conserved region denoted as the SIX domain. Genes of the SIX family encode nuclear homeobox proteins that have been proposed to be the DNA binding domain of a transcription complex that also includes members of the EYA (eyes absent) gene family. A number of studies suggest important roles for the SIX genes in the development of the anterior part of the vertebrate CNS and eye, in myogenesis and perhaps also in the development of the auditory system, kidneys, digits and connective tissue. This review presents a comprehensive description of the current knowledge of the human SIX gene family, including unpublished data from our laboratories. We describe the genomic organization and structure of the human SIX genes and discuss their phylogenetic relationships in the context of the evolution of the SIX gene family. Using data mostly available from other species we discuss the developmental expression patterns and function of the SIX genes. Lastly, we present the current knowledge of the involvement of the SIX genes in human disease.
Keywords: Homeobox genes, drosophila sine oculis so gene, sine oculis gene, six dysfunction, holoprosencephaly type II hpe
Current Genomics
Title: The Human SIX Family of Homeobox Genes
Volume: 2 Issue: 3
Author(s): Santiago Rodriguez de Cordoba, M. Esther Gallardo, Javier Lopez Rios and Pola Bovolenta
Affiliation:
Keywords: Homeobox genes, drosophila sine oculis so gene, sine oculis gene, six dysfunction, holoprosencephaly type II hpe
Abstract: The Drosophila sine oculis (so) gene is a high hierarchy and essential gene in the developmental pathway of the fly visual system. so is the founder member of the SIX family, which in the fly also includes the genes D-six3 (optix) and D-six4 and in vertebrates, the SIX1, SIX2, SIX3, SIX4, SIX5 and SIX6 genes. In addition to a homeobox domain, all members of the SIX family of proteins contain a characteristic highly conserved region denoted as the SIX domain. Genes of the SIX family encode nuclear homeobox proteins that have been proposed to be the DNA binding domain of a transcription complex that also includes members of the EYA (eyes absent) gene family. A number of studies suggest important roles for the SIX genes in the development of the anterior part of the vertebrate CNS and eye, in myogenesis and perhaps also in the development of the auditory system, kidneys, digits and connective tissue. This review presents a comprehensive description of the current knowledge of the human SIX gene family, including unpublished data from our laboratories. We describe the genomic organization and structure of the human SIX genes and discuss their phylogenetic relationships in the context of the evolution of the SIX gene family. Using data mostly available from other species we discuss the developmental expression patterns and function of the SIX genes. Lastly, we present the current knowledge of the involvement of the SIX genes in human disease.
Export Options
About this article
Cite this article as:
Cordoba Rodriguez de Santiago, Gallardo Esther M., Rios Lopez Javier and Bovolenta Pola, The Human SIX Family of Homeobox Genes, Current Genomics 2001; 2 (3) . https://dx.doi.org/10.2174/1389202013350832
DOI https://dx.doi.org/10.2174/1389202013350832 |
Print ISSN 1389-2029 |
Publisher Name Bentham Science Publisher |
Online ISSN 1875-5488 |
Call for Papers in Thematic Issues
Current Genomics in Cardiovascular Research
Cardiovascular diseases are the main cause of death in the world, in recent years we have had important advances in the interaction between cardiovascular disease and genomics. In this Research Topic, we intend for researchers to present their results with a focus on basic, translational and clinical investigations associated with ...read more
Deep learning in Single Cell Analysis
The field of biology is undergoing a revolution in our ability to study individual cells at the molecular level, and to integrate data from multiple sources and modalities. This has been made possible by advances in technologies for single-cell sequencing, multi-omics profiling, spatial transcriptomics, and high-throughput imaging, as well as ...read more
New insights on Pediatric Tumors and Associated Cancer Predisposition Syndromes
Because of the broad spectrum of children cancer susceptibility, the diagnosis of cancer risk syndromes in children is rarely used in direct cancer treatment. The field of pediatric cancer genetics and genomics will only continue to expand as a result of increasing use of genetic testing tools. It's possible that ...read more
Related Journals
- Author Guidelines
- Graphical Abstracts
- Fabricating and Stating False Information
- Research Misconduct
- Post Publication Discussions and Corrections
- Publishing Ethics and Rectitude
- Increase Visibility of Your Article
- Archiving Policies
- Peer Review Workflow
- Order Your Article Before Print
- Promote Your Article
- Manuscript Transfer Facility
- Editorial Policies
- Allegations from Whistleblowers
- Announcements
Related Articles
-
Discovery of BRM Targeted Therapies: Novel Reactivation of an Anticancer Gene
Letters in Drug Design & Discovery Mesothelioma - Update on Management
Current Respiratory Medicine Reviews Selenium-Rich Foods: a Promising Approach to Colorectal Cancer Prevention
Current Pharmaceutical Biotechnology Estrogens and Colorectal Cancer
Current Drug Targets - Immune, Endocrine & Metabolic Disorders Orthotopic Liver Transplantation in Non-Alcoholic Fatty Liver Disease Patients
Reviews on Recent Clinical Trials COX-2, Cell Proliferation and PMA in Head-and-Neck Cancer Cells
Immunology, Endocrine & Metabolic Agents in Medicinal Chemistry (Discontinued) In Vivo Roles of CDC25 Phosphatases: Biological Insight into the Anti-Cancer Therapeutic Targets
Anti-Cancer Agents in Medicinal Chemistry Dietary Polyphenols for Prostate Cancer Therapy
Current Bioactive Compounds Synthesis and Antiproliferative Assay of Norcantharidin Derivatives in Cancer Cells
Medicinal Chemistry Study about How A Sample of Portuguese People Perceive the Health Benefits of Dietary Fibre
Current Nutrition & Food Science The Role of Cetuximab and Other Epidermal Growth Factor Receptor Monoclonal Antibodies in the Treatment of Advanced Non-Small Cell Lung Cancer
Reviews on Recent Clinical Trials Gene Therapy Using IL-12 Family Members in Infection, Auto-Immunity, and Cancer
Current Gene Therapy Currently Used Antimycotics: Spectrum, Mode of Action and Resistance Occurrence
Current Drug Targets Alterations in Homocysteine Metabolism Among Alcohol Dependent Patients - Clinical, Pathobiochemical and Genetic Aspects
Current Drug Abuse Reviews New Molecular Targets of Anticancer Therapy – Current Status and Perspectives
Current Medicinal Chemistry Recent Advances in Developing Photosensitizers for Photodynamic Cancer Therapy
Combinatorial Chemistry & High Throughput Screening Lung Ultrasound in the Critically Ill Neonate
Current Pediatric Reviews Reversing Aberrant Methylation Patterns in Cancer
Current Medicinal Chemistry HOX Genes as Potential Markers of Circulating Tumour Cells
Current Molecular Medicine Anticancer Potential of Dietary Natural Products: A Comprehensive Review
Anti-Cancer Agents in Medicinal Chemistry