Becker Muscular Dystrophy



Similar documents
Lecture 6: Single nucleotide polymorphisms (SNPs) and Restriction Fragment Length Polymorphisms (RFLPs)

1 Mutation and Genetic Change

Genetics Module B, Anchor 3

DIAGNOSING CHILDHOOD MUSCULAR DYSTROPHIES

Lecture 13: DNA Technology. DNA Sequencing. DNA Sequencing Genetic Markers - RFLPs polymerase chain reaction (PCR) products of biotechnology

Human Genome Organization: An Update. Genome Organization: An Update

Bioinformatics Resources at a Glance

Gene mutation and molecular medicine Chapter 15

Biotechnology: DNA Technology & Genomics

Appendix 2 Molecular Biology Core Curriculum. Websites and Other Resources

Genetic Technology. Name: Class: Date: Multiple Choice Identify the choice that best completes the statement or answers the question.

Biotechnology and Recombinant DNA (Chapter 9) Lecture Materials for Amy Warenda Czura, Ph.D. Suffolk County Community College

Recombinant DNA Technology

SICKLE CELL ANEMIA & THE HEMOGLOBIN GENE TEACHER S GUIDE

Chapter 8: Recombinant DNA 2002 by W. H. Freeman and Company Chapter 8: Recombinant DNA 2002 by W. H. Freeman and Company

Recombinant DNA Technology

How many of you have checked out the web site on protein-dna interactions?

Biological Sciences Initiative. Human Genome

restriction enzymes 350 Home R. Ward: Spring 2001

Gene Mapping Techniques

Lecture 3: Mutations

INTERNATIONAL CONFERENCE ON HARMONISATION OF TECHNICAL REQUIREMENTS FOR REGISTRATION OF PHARMACEUTICALS FOR HUMAN USE Q5B

The Human Genome Project

Recombinant DNA Unit Exam

Genetic Testing in Research & Healthcare

Forensic DNA Testing Terminology

CCR Biology - Chapter 9 Practice Test - Summer 2012

The following chapter is called "Preimplantation Genetic Diagnosis (PGD)".

European Medicines Agency

DNA Fingerprinting. Unless they are identical twins, individuals have unique DNA

Genetic Mutations. Indicator 4.8: Compare the consequences of mutations in body cells with those in gametes.

Just the Facts: A Basic Introduction to the Science Underlying NCBI Resources

Arabidopsis. A Practical Approach. Edited by ZOE A. WILSON Plant Science Division, School of Biological Sciences, University of Nottingham

Genetics Test Biology I

Special report. Chronic Lymphocytic Leukemia (CLL) Genomic Biology 3020 April 20, 2006

GenBank, Entrez, & FASTA

Mendelian inheritance and the

CHAPTER 15 THE CHROMOSOMAL BASIS OF INHERITANCE. Section B: Sex Chromosomes

14.3 Studying the Human Genome

Muscular Dystrophy: Stem Cell Therapy

How Does a Genetic Counselor Detect Mutant Genes? SECTION E. How Genes and the Environment Influence Our Health CHAPTER 3

Recombinant DNA and Biotechnology

Introduction to Bioinformatics 3. DNA editing and contig assembly

This fact sheet describes how genes affect our health when they follow a well understood pattern of genetic inheritance known as autosomal recessive.

What Is Genetic Counseling? Helping individuals and families understand how genetics affects their health and lives

Protein Synthesis How Genes Become Constituent Molecules

Nucleic Acid Techniques in Bacterial Systematics

Genetics Lecture Notes Lectures 1 2

Recombinant DNA & Genetic Engineering. Tools for Genetic Manipulation

RETRIEVING SEQUENCE INFORMATION. Nucleotide sequence databases. Database search. Sequence alignment and comparison

MEDICAL GENETICS GENERAL OBJECTIVE SPECIFIC OBJECTIVES

Trasposable elements: P elements

Bob Jesberg. Boston, MA April 3, 2014

Description: Molecular Biology Services and DNA Sequencing

2. The number of different kinds of nucleotides present in any DNA molecule is A) four B) six C) two D) three

Muscular Dystrophy. By. Tina Strauss

To be able to describe polypeptide synthesis including transcription and splicing

Design of conditional gene targeting vectors - a recombineering approach

somatic cell egg genotype gamete polar body phenotype homologous chromosome trait dominant autosome genetics recessive

HiPer RT-PCR Teaching Kit

AP BIOLOGY 2007 SCORING GUIDELINES

Genetics 301 Sample Final Examination Spring 2003

Algorithms in Computational Biology (236522) spring 2007 Lecture #1

MUTATION, DNA REPAIR AND CANCER

BioBoot Camp Genetics

Test Two Study Guide

HCS Exercise 1 Dr. Jones Spring Recombinant DNA (Molecular Cloning) exercise:

Question 4 /29 points. Total /100 points

Genomes and SNPs in Malaria and Sickle Cell Anemia

Section 16.1 Producing DNA fragments

How to construct transgenic mice

Molecular Biology Techniques: A Classroom Laboratory Manual THIRD EDITION

Structure and Function of DNA

Genetics Review for USMLE (Part 2)

Genetic information (DNA) determines structure of proteins DNA RNA proteins cell structure enzymes control cell chemistry ( metabolism )

2. True or False? The sequence of nucleotides in the human genome is 90.9% identical from one person to the next. False (it s 99.

Gene Models & Bed format: What they represent.

MCB41: Second Midterm Spring 2009

Bio 102 Practice Problems Genetic Code and Mutation

Human Genome and Human Genome Project. Louxin Zhang

Course Curriculum for Master Degree in Medical Laboratory Sciences/Clinical Biochemistry

Analysis of the DNA Methylation Patterns at the BRCA1 CpG Island

2.1.2 Characterization of antiviral effect of cytokine expression on HBV replication in transduced mouse hepatocytes line

CHROMOSOMES Dr. Fern Tsien, Dept. of Genetics, LSUHSC, NO, LA

Course Curriculum for Master Degree in Medical Laboratory Sciences/Clinical Microbiology, Immunology and Serology

Umm AL Qura University MUTATIONS. Dr Neda M Bogari

RNA Viruses. A Practical Approac h. Alan J. Cann

Heritability: Twin Studies. Twin studies are often used to assess genetic effects on variation in a trait

UNIT 13 (OPTION) Genetic Abnormalities

Biology Behind the Crime Scene Week 4: Lab #4 Genetics Exercise (Meiosis) and RFLP Analysis of DNA

Name Class Date. Figure Which nucleotide in Figure 13 1 indicates the nucleic acid above is RNA? a. uracil c. cytosine b. guanine d.

Bio 102 Practice Problems Recombinant DNA and Biotechnology

How to construct transgenic mice

DNA Sequence Alignment Analysis

Mechanisms of Evolution

Transcription:

Muscular Dystrophy A Case Study of Positional Cloning Described by Benjamin Duchenne (1868) X-linked recessive disease causing severe muscular degeneration. 100 % penetrance X d Y affected male Frequency in males = 1/3600 X d X d females do exist Rare cases of affected females caused by translocations. Clinical characteristics Onset at 3-5 years Severe muscular loss at 10 12 years Fatal 15-25 years Pedigree of Duchenne Muscular Dystrophy Becker Muscular Dystrophy X-linked recessive Symptoms identical to DMD but much slower onset Maps to the same location on the X chromosome as DMD Positional Cloning of Duchenne Muscular Dystrophy A Case Study Genetic Mapping based on recombination frequency (expressed as cm) Physical Mapping actual molecular distance in nucleotide base pairs (expressed as bp, kb, or mb) 1

Approaches to Gene Cloning Traditional based on the knowledge of the normal gene product Positional cloning with no prior knowledge of the mutant gene product (protein) or its function. Traditional Approaches to Gene Cloning Isolation of gene specific mrna to make a cdna probe. Degenerate oligonucleotide probes based on amino acid sequence. Expression cloning (e.g., antibody detection of the expressed protein by in a cloning vector). Some Notable Examples of Genes Isolated by Positional Cloning Positional Cloning Duchenne Muscular Dystrophy Fragile X Syndrome Cystic Fibrosis Huntington Disease Retinoblastoma Neurofibromatosis A Great Web Site Go to: http://www.dnalc.org/resources/biologyani mationlibrary.htm Download Shockwave from this page. Click Play or down the files for later. Learn PCR, Southern Blotting, Sequencing, DNA forensics, etc.!! Sidebar Do you have a good understanding of the following? Southern Blot Northern Blot Radioactive labeling of DNA Plaque hybridization Colony hybridization Polymerase Chain Reaction (PCR) Nucleotide sequencing 2

Genetic disease Positional Cloning - Step 1 Retrieve genomic clones that cover the mapped region Isolate genomic clones Genetic disease Characterize the normal gene Mutation detection assays Cloning of the DMD Gene Using Deletion Analysis Patient B.B. Rare cytological detectable deletion Width of Xp21 significantly reduced Multiple genetic disorders DMD Chronic granulamatous disease (CGC) Retinitis pigmentosa - Deletion 10 mb in length Normal X Patient B.B. DMD CGD RB Subtractive Hybridization Monoco, Kunkel and others (1986) Outcome of Subtractive Hybridization G - (G-10) = 10 DMD CGD RP X Chromosome Normal Denatured Genomic DNA Patient B.B. Denatured DNA (excess) Normal DNA Sequences Absent in B.B. Nine pert clones Short DNA sequences in a plasmid vector Represent less than 1% of the genetic material within the deletion Which pert clones map to the DMD gene? 3

Which pert Clones (if any) Are Located Within the DMD Gene? Positional Cloning - Step 2 Tested a panel of 57 DMD patients. 8 of 9 clones hybridized with all DMD patients. One pert clone (pert87) was absent in 5 DMD patients. Possible that these patients have microdeletions within the DMD gene in the sequence represented by pert87. Retrieve genomic clones Alignment of lambda-phage Clones by Restrictions Maps pert 87 Was Used to Screen a lambda-phage Genomic Library pert87 R K R R R K R K R = EcoRI K = KpnI Chromosome walking pert-87 Round 1 Genomic Contig After Three Rounds of Walking Round 2 Round 3 Total Length of Cloned DNA 4

Genomic Contig After Nine Rounds of Bidirectional Walking pert87 (200 bp) Genetic disease Retrieve genomic clones that cover the mapped region Isolate a genomic clones DXS164 (220 kb) Characterize the normal gene Mutation detection assays Step 3 - Identification of Exons Screening for Coding Regions Retrieve genomic clones that cover the mapped region Sequence conservation Exon trapping Identification of CpG islands Screen cdna libraries Exon Trapping Exon Trapping (continued) 5

Zoo Blot (Inter-species Southern Blot) Results of Exon Trapping Using Small Subclones of DSX164 pert87-25 pert87-4 DSX164 * Blot for the NF2 gene 3 5 3 5 Step 4 Preparation of a cdna Library Preparation of a cdna Library (continued) Step 5 Isolation of Full Genomic Sequence Use cdnas in Northern blots to determine the length of transcripts. Use cdnas to screen genomic libraries for additional functional components of the gene 6

Step 6 Characterization of the Normal Gene Identify the positions of exons Identify promoter, 5 and 3 UT exons Sequence exons Predict amino acid sequence Attempt to predict function of gene product Properties of the Normal DMD Gene Huge! covers 2 mb of DNA 16 kb mrna Over 75 exons Very long introns At least 8 promoters 4 preceding the coding region and 4 in introns Expression seen in muscle, heart and brain (but a very low levels) Predicted protein length of about 3700 amino acids in its full length form Protein called dystrophin 4 functional domains Exact function still unclear One More Step Proof that Mutations in the Cloned Genes Causes the Disease Genetic disease Retrieve genomic clones that cover the mapped region Isolate a genomic clones Characterize the normal gene Mutation detection assays 7