Murine Homeobox Gene Control of Embryonic Patterning and Organogenesis
Lufkin, T.
Couldn't load pickup availability
Table of contents
- Cover
- MURINE HOMEOBOX GENE CONTROL OF EMBRYONIC PATTERNING AND ORGANOGENESISiii
- Copyright Pageiv
- Contentsv
- Prefacevii
- List of Contributorsxi
- Chapter 1. Hox proteins and their co-factors in transcriptional regulation1
- Chapter 2. Msx genes in organogenesis and human disease43
- Chapter 3. Cdx homeobox proteins in vertebral patterning69
- Chapter 4. Dlx genes in craniofacial and limb morphogenesis107
- Chapter 5. Prx, Alx, and Shox genes in craniofacial and appendicular development133
- Chapter 6. Hox gene control of neural crest cell, pharyngeal arch and craniofacial patterning155
- Chapter 7. Role of Otx transcription factors in brain development207
- Vendor Elsevier S & T
- SKU 9780444514981
- ISBN-13 9780080497358
- Author Lufkin, T.
- Category Science
- Subject Developmental Biology
Do you have questions about this book?
The amino acid sequence of the homeodomain, as well as the presence of other conserved protein domains, has allowed the classification of homeodomain-containing proteins (homeoproteins) into over thirty separate families (e.g. Hox, Dlx, Msx, Otx, Hmx, Cdx etc.). In many cases a single gene has been shown to fully direct the morphogenesis and development of a complex tissue, organ or even an entire body segment. Yet how this "master" regulatory ability of homeoproteins functions at the molecular level to a large degree still remains a mystery, in part owing to our limited understanding of the nature of both homeoprotein transcriptional cofactors and even more elusively, the downstream targets of homeoprotein function.
In the reviews presented here it is limited primarily to what has been learned in vertebrate systems, principally focusing on the mouse, owing to the strengths of the technical approaches currently existing in murine developmental genetics that are not yet available to the same degree in other vertebrate species. Despite this mammalian predilection, a common thread to each of these reviews is the underlying importance of what has been learned about homeoprotein function in other animal species, particularly arthropods like Drosophila.
Instant delivery by email
Your access email arrives within minutes of checkout, with a sign-in link for each book — no shipping, no waiting.
Read on any device
Books open in VitalSource Bookshelf on your phone, tablet, or computer, online or offline. Your library is always available at aafaq.vitalsource.com — just log in with the email you used at checkout.
Lost the email?
Resend it to yourself in seconds from My eBook orders, or email cs@aafaqeducation.com and we'll help.