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CHAPTER 16 – THE MOLECULAR BASIS OF INHERITANCE
CHAPTER 16 – THE MOLECULAR BASIS OF INHERITANCE

...  The impact of DNA methylation and histone acetylation on gene expression  The role of oncogenes, proto-oncogenes, and tumor suppressor genes in cancer. I. CHROMATIN STRUCTURE  Eukaryotes have substantially more DNA than prokaryotes. This DNA must be organized and managed for cell specialization. ...
Genetic Analysis of Genome-wide Variation in Human Gene
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Reverse Genetics- Gene Knockouts
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Muscular Dystrophy Web Walk Answers
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Interactive Notebook Meiosis
Interactive Notebook Meiosis

... sperm cells. He knew about Mendel’s work. When he saw chromosomes separating during meiosis, he made an important conclusion: genes are located on chromosomes. The figure below shows what happens to chromosomes during meiosis and fertilization in pea plants. The cross shown is between two true-breed ...
MEIOSIS AND SEXUAL LIFE CYCLES CH 13
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Guide for Bioinformatics Project Module 2 - SGD-Wiki

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... Mating locus proteins from the two gametes interact to form a heterodimer transcription factor in the fused diploid cell. This novel transcription factor initiates the expression of the genes for zygote development, including meiosis. Transcription factors Cell type from mt locus As separate protein ...
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... Genome Annotation • Which sequences code for proteins and structural RNAs ? • What is the function of the predicted gene products ? • Can we link genotype to phenotype ? (i.e. What genes are turned on when ? Why do two strains of the same pathogen vary in their pathogenicity ?) • Can we trace the e ...
Lecture 14
Lecture 14

... functionally redundant gene is not likely to lead to an easily recognizable phenotype, because one or more other family members can provide the same function. Analysis of systematic gene knockouts has revealed that a significant percentage of yeast genes have no obvious phenotype when disrupted, des ...
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NEDD9

Neural precursor cell expressed developmentally down-regulated protein 9 (NEDD-9) is a protein that in humans is encoded by the NEDD9 gene. NEDD-9 is also known as enhancer of filamentation 1 (EF1), CRK-associated substrate-related protein (CAS-L), and Cas scaffolding protein family member 2 (CASS2). An important paralog of this gene is BCAR1.
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