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Full-Text Articles in Life Sciences

The Β-Isoform Of Bccip Promotes Adp Release From The Rad51 Presynaptic Filament And Enhances Homologous Dna Pairing, Andrew A. Kelso, Steven D. Goodson, Leah E. Watts, Leanna L. Ledford, Sarah M. Waldvogel, J. Nathaniel Diehl, Shivani B. Shah, Amanda F. Say, Julie D. White, Michael G. Sehorn Sep 2016

The Β-Isoform Of Bccip Promotes Adp Release From The Rad51 Presynaptic Filament And Enhances Homologous Dna Pairing, Andrew A. Kelso, Steven D. Goodson, Leah E. Watts, Leanna L. Ledford, Sarah M. Waldvogel, J. Nathaniel Diehl, Shivani B. Shah, Amanda F. Say, Julie D. White, Michael G. Sehorn

Publications

Homologous recombination (HR) is a template-driven repair pathway that mends DNA double-stranded breaks (DSBs), and thus helps to maintain genome stability. The RAD51 recombinase facilitates DNA joint formation during HR, but to accomplish this task, RAD51 must be loaded onto the single-stranded DNA. DSS1, a candidate gene for split hand/split foot syndrome, provides the ability to recognize RPA-coated ssDNA to the tumor suppressor BRCA2, which is complexed with RAD51. Together BRCA2-DSS1 displace RPA and load RAD51 onto the ssDNA. In addition, the BRCA2 interacting protein BCCIP normally colocalizes with chromatin bound BRCA2, and upon DSB induction, RAD51 colocalizes with BRCA2-BCCIP …


Ectopic Expression Of A Cyanobacterial Flavodoxin In Creeping Bentgrass Impacts Plant Development And Confers Broad Abiotic Stress Tolerance, Zhigang Li, Shuangrong Yuan, Haiyan Jia, Fangyuan Gao, Qian Hu, Dongfa Sun, Hong Luo Sep 2016

Ectopic Expression Of A Cyanobacterial Flavodoxin In Creeping Bentgrass Impacts Plant Development And Confers Broad Abiotic Stress Tolerance, Zhigang Li, Shuangrong Yuan, Haiyan Jia, Fangyuan Gao, Qian Hu, Dongfa Sun, Hong Luo

Publications

Flavodoxin (Fld) plays a pivotal role in photosynthetic microorganisms as an alternative electron carrier flavoprotein under adverse environmental conditions. Cyanobacterial Fld has been demonstrated to be able to substitute ferredoxin (Fd) of higher plants in most electron transfer processes under stressful conditions. We have explored the potential of Fld for use in improving plant stress response in creeping bentgrass (Agrostis stolonifera L.). Overexpression of Fld altered plant growth and development. Most significantly, transgenic (TG) plants exhibited drastically enhanced performance under oxidative, drought and heat stress as well as nitrogen (N) starvation, which was associated with higher water retention and …


Exploring The Interface Of Genetics, Genomics, And Older Adults, Scott Emory Moore Aug 2016

Exploring The Interface Of Genetics, Genomics, And Older Adults, Scott Emory Moore

All Dissertations

This dissertation addresses the interface of genetics, genomics, and older adults through a collection of three manuscripts that examine genetic and genomic testing and decision-making across age groups. The dissertation offers evaluations of a new lens for decision-making in genetics and genomics, a contextualization of the differences and similarities of perceptions and beliefs that exist among age groups engaging in direct-to-consumer personal genetic testing (DTC PGT), an identification of two factors that influence the decision to engage in DTC PGT, and an expansion of the current applications of Protection Motivation Theory to include disclosure, finance, and advance directive-management behaviors related …


The Role The N-Terminal Domain Plays In Spidroin Assembly, Krystal Audrey Cadle Aug 2016

The Role The N-Terminal Domain Plays In Spidroin Assembly, Krystal Audrey Cadle

All Dissertations

One of the most interesting biomaterials known to man is spider silk. These fibers, composed primarily of protein, show beneficial mechanical and biological properties that have many uses in medical and industrial fields. Spider silk proteins (spidroins) are composed of three core components that consists of a C-terminal domain (CTD), repeat domain (R), and N-terminal domain (NTD). The NTD and CTD are highly conserved and are believed to form “multimeric strands” that make up spider silk. Although it is known that the NTD undergoes a conformational change that results in stable homodimer formation at acidic pH , the way in …


Tackling Adverse Environment—Molecular Mechanism Of Plant Stress Response And Biotechnology Tool Development, Ning Yuan Aug 2016

Tackling Adverse Environment—Molecular Mechanism Of Plant Stress Response And Biotechnology Tool Development, Ning Yuan

All Dissertations

Abiotic and biotic stresses such as drought, salt, nutrition starvation, and pathogen infection are major factors threatening our agricultural production. With the rapidly increasing population and limited arable land area, genetic engineering of crops for new products with more stable and higher yield than conventional cultivars under adverse environment provides a powerful new tool for use in developing novel GMOs (Genetically Modified Organisms) to feed the large population in the immediate future. To develop novel GMOs with enhanced performance under adverse conditions, we need first to understand molecular mechanisms underlying plant stress response. To better understand how signaling transduction pathway …


Heterologous Expression Of A Rice Mir395 Gene In Nicotiana Tabacum Impairs Sulfate Homeostasis, Ning Yuan, Shuangrong Yuan, Zhigang Li, Dayong Li, Qian Hu, Hong Luo Jun 2016

Heterologous Expression Of A Rice Mir395 Gene In Nicotiana Tabacum Impairs Sulfate Homeostasis, Ning Yuan, Shuangrong Yuan, Zhigang Li, Dayong Li, Qian Hu, Hong Luo

Publications

Sulfur participates in many important mechanisms and pathways of plant development. The most common source of sulfur in soil –SO42−– is absorbed into root tissue and distributed into aerial part through vasculature system, where it is reduced into sulfite and finally sulfide within the subcellular organs such as chloroplasts and mitochondria and used for cysteine and methionine biosynthesis. MicroRNAs are involved in many regulation pathways by repressing the expression of their target genes. MiR395 family in Arabidopsis thaliana has been reported to be an important regulator involved in sulfate transport and assimilation, and a high-affinity sulphate transporter …


Heterologous Expression Of A Rice Mir395 Gene In Nicotiana Tabacum Impairs Sulfate Homeostasis, Ning Yuan, Shuangrong Yuan, Zhigang Li, Dayong Li, Hong Luo Jun 2016

Heterologous Expression Of A Rice Mir395 Gene In Nicotiana Tabacum Impairs Sulfate Homeostasis, Ning Yuan, Shuangrong Yuan, Zhigang Li, Dayong Li, Hong Luo

Publications

Sulfur participates in many important mechanisms and pathways of plant development. The most common source of sulfur in soil –SO42−– is absorbed into root tissue and distributed into aerial part through vasculature system, where it is reduced into sulfite and finally sulfide within the subcellular organs such as chloroplasts and mitochondria and used for cysteine and methionine biosynthesis. MicroRNAs are involved in many regulation pathways by repressing the expression of their target genes. MiR395 family in Arabidopsis thaliana has been reported to be an important regulator involved in sulfate transport and assimilation, and a high-affinity sulphate transporter and three ATP …