Open Access. Powered by Scholars. Published by Universities.®

Biochemistry, Biophysics, and Structural Biology Commons

Open Access. Powered by Scholars. Published by Universities.®

Department of Biochemistry: Faculty Publications

Discipline
Keyword
Publication Year

Articles 451 - 480 of 592

Full-Text Articles in Biochemistry, Biophysics, and Structural Biology

Plant-Like Substitutions In The Large-Subunit Carboxy Terminus Of Chlamydomonas Rubisco Increase Co2/O2 Specificity, Sriram Satagopan, Robert Spreitzer Jan 2008

Plant-Like Substitutions In The Large-Subunit Carboxy Terminus Of Chlamydomonas Rubisco Increase Co2/O2 Specificity, Sriram Satagopan, Robert Spreitzer

Department of Biochemistry: Faculty Publications

Background: Ribulose-1,5-bisphosphate is the rate-limiting enzyme in photosynthesis. The catalytic large subunit of the green-algal enzyme from Chlamydomonas reinhardtii is ~90% identical to the flowering-plant sequences, although they confer diverse kinetic properties. To identify the regions that may account for species variation in kinetic properties, directed mutagenesis and chloroplast transformation were used to create four amino-acid substitutions in the carboxy terminus of the Chlamydomonas large subunit to mimic the sequence of higher-specificity plant enzymes.
Results: The quadruple-mutant enzyme has a 10% increase in CO2/O2 specificity and a lower carboxylation catalytic efficiency. The mutations do not seem to …


Structural Basis Of The Transcriptional Regulation Of The Proline Utilization Regulon By Multifunctional Puta, Yuzhen Zhou, John D. Larson, Christopher A. Bottoms, Emilia C. Arturo, Michael T. Henzl, Jermaine L. Jenkins, Jay C. Nix, Donald F. Becker, John J. Tanner Jan 2008

Structural Basis Of The Transcriptional Regulation Of The Proline Utilization Regulon By Multifunctional Puta, Yuzhen Zhou, John D. Larson, Christopher A. Bottoms, Emilia C. Arturo, Michael T. Henzl, Jermaine L. Jenkins, Jay C. Nix, Donald F. Becker, John J. Tanner

Department of Biochemistry: Faculty Publications

The multifunctional Escherichia coli proline utilization A (PutA) flavoprotein functions both as a membrane-associated proline catabolic enzyme and as a transcriptional repressor of the proline utilization genes putA and putP. To better understand the mechanism of transcriptional regulation by PutA, we have mapped the put-regulatory region, determined a crystal structure of the PutA ribbon–helix–helix domain (PutA52, a polypeptide corresponding to residues 1–52 of E. coli PutA) complexed with DNA, and examined the thermodynamics of DNA binding to PutA52. Five operator sites, each containing the sequence motif 5′-GTTGCA-3′, were identified using gelshift analysis. Three of the sites are shown to be …


Identification Of A Consensus Dna-Binding Site For The Arabidopsis Thaliana Sbp Domain Transcription Factor, Atspl14, And Binding Kinetics By Surface Plasmon Resonance, Xinwen Liang, Tara J. Nazarenus, Julie M. Stone Jan 2008

Identification Of A Consensus Dna-Binding Site For The Arabidopsis Thaliana Sbp Domain Transcription Factor, Atspl14, And Binding Kinetics By Surface Plasmon Resonance, Xinwen Liang, Tara J. Nazarenus, Julie M. Stone

Department of Biochemistry: Faculty Publications

Proteins with a conserved Cys- and His-rich SQUAMOSA promoter binding protein (SBP) domain are transcription factors restricted to photosynthetic organisms that possess a novel two Zn-finger structure DNA-binding domain. Despite the fact that altered expression of some SBP-encoding genes has profound effects on organism growth and development, little is known about SBP domain protein target genes. Misexpression of the Arabidopsis thaliana AtSPL14 SBP domain gene confers resistance to programmed cell death and modifies plant architecture. A consensus DNA-binding motif for AtSPL14 was identified by systematic evolution of ligands by exponential enrichment (SELEX) or random binding site selection (RBSS). DNA recognized …


Mapping The Functional Interaction Of Sco1 And Cox2 In Cytochrome Oxidase Biogenesis, Kevin Rigby, Paul A. Cobine, Oleh Khalimonchuk, Dennis R. Winge Jan 2008

Mapping The Functional Interaction Of Sco1 And Cox2 In Cytochrome Oxidase Biogenesis, Kevin Rigby, Paul A. Cobine, Oleh Khalimonchuk, Dennis R. Winge

Department of Biochemistry: Faculty Publications

Sco1 is implicated in the copper metallation of the CuA site in

Cox2 of cytochrome oxidase. The structure of Sco1 in the metallated

and apo-conformers revealed structural dynamics primarily

in an exposed region designated loop 8. The structural

dynamics of loop 8 in Sco1 suggests it may be an interface for

interactions with Cox17, the Cu(I) donor and/or Cox2. A series

of conserved residues in the sequence motif 217KKYRVYF223 on

the leading edge of this loop are shown presently to be important

for yeast Sco1 function. Cells harboring Y219D, R220D, V221D,

and Y222D mutant Sco1 proteins failed …


Function And Redox State Of Mitochondrial Localized Cysteine-Rich Proteins Important In The Assembly Of Cytochrome C Oxidase, Oleh Khalimonchuk, Dennis R. Winge Jan 2008

Function And Redox State Of Mitochondrial Localized Cysteine-Rich Proteins Important In The Assembly Of Cytochrome C Oxidase, Oleh Khalimonchuk, Dennis R. Winge

Department of Biochemistry: Faculty Publications

The cytochrome c oxidase (CcO) complex of the mitochondrial respiratory chain exists within the mitochondrial inner membrane (IM). The biogenesis of the complex is a multi-faceted process requiring multiple assembly factors that function on both faces of the IM. Formation of the two copper centers of CcO occurs within the intermembrane space (IMS) and is dependent on assembly factors with critical cysteinyl thiolates. Two classes of assembly factors exist, one group being soluble IMS proteins and the second class being proteins tethered to the IM. A common motif in the soluble assembly factors is a duplicated Cx9C sequence …


Pet191 Is A Cytochrome C Oxidase Assembly Factor In Saccharomyces Cerevisiae, Oleh Khalimonchuk, Kevin Rigby, Megan Bestwick, Fabien Pierrel, Paul A. Cobine, Dennis R. Winge Jan 2008

Pet191 Is A Cytochrome C Oxidase Assembly Factor In Saccharomyces Cerevisiae, Oleh Khalimonchuk, Kevin Rigby, Megan Bestwick, Fabien Pierrel, Paul A. Cobine, Dennis R. Winge

Department of Biochemistry: Faculty Publications

The twin-Cx9C motif protein Pet191 is essential for cytochrome c oxidase maturation. The motif Cys residues are functionally important and appear to be present in disulfide linkages within a large oligomeric complex associated with the mitochondrial inner membrane. The import of Pet191 differs from that of other twin-Cx9C motif class of proteins in being independent of the Mia40 pathway.


Coa2 Is An Assembly Factor For Yeast Cytochrome C Oxidase Biogenesis That Facilitates The Maturation Of Cox1, Fabien Pierrel, Oleh Khalimonchuk, Paul A. Cobine, Megan Bestwick, Dennis R. Winge Jan 2008

Coa2 Is An Assembly Factor For Yeast Cytochrome C Oxidase Biogenesis That Facilitates The Maturation Of Cox1, Fabien Pierrel, Oleh Khalimonchuk, Paul A. Cobine, Megan Bestwick, Dennis R. Winge

Department of Biochemistry: Faculty Publications

The assembly of cytochrome c oxidase (CcO) in yeast mitochondria is dependent on a new assembly factor designated Coa2. Coa2 was identified from its ability to suppress the respiratory deficiency of coa1 Δ and shy1 Δ cells. Coa1 and Shy1 function at an early step in maturation of the Cox1 subunit of CcO. Coa2 functions downstream of the Mss51-Coa1 step in Cox1 maturation and likely concurrent with the Shy1-related heme a3 insertion into Cox1. Coa2 interacts with Shy1. Cells lacking Coa2 show a rapid degradation of newly synthesized Cox1. Rapid Cox1 proteolysis also occurs in shy1 Δ cells, suggesting …


Purification From Human Milk Of Matriptase Complexes With Secreted Serpins: Mechanism For Inhibition Of Matriptase Other Than Hai-1, I-Chu Tseng, Feng-Pai Chou, Sheng-Feng Su, Michael Oberst, Nandakumar Madayiputhiya, Ming-Shyue Lee, Jehng-Kang Wang, David E. Sloane, Michael Johnson, Chen-Yong Lin Jan 2008

Purification From Human Milk Of Matriptase Complexes With Secreted Serpins: Mechanism For Inhibition Of Matriptase Other Than Hai-1, I-Chu Tseng, Feng-Pai Chou, Sheng-Feng Su, Michael Oberst, Nandakumar Madayiputhiya, Ming-Shyue Lee, Jehng-Kang Wang, David E. Sloane, Michael Johnson, Chen-Yong Lin

Department of Biochemistry: Faculty Publications

Matriptase, a type 2 transmembrane serine protease, is predominately expressed by epithelial and carcinoma cells in which hepatocyte growth factor activator inhibitor 1 (HAI-1), a membrane-bound, Kunitz-type serine protease inhibitor, is also expressed. HAI-1 plays dual roles in the regulation of matriptase, as a conventional protease inhibitor and as a factor required for zymogen activation of matriptase. As a consequence, activation of matriptase is immediately followed by HAI-1-mediated inhibition, with the activated matriptase being sequestered into HAI-1 complexes. Matriptase is also expressed by peripheral blood leukocytes, such as monocytes and macrophages; however, in contrast to epithelial cells, monocytes and macrophages …


High-Throughput Screening For Fatty Acid Uptake Inhibitors In Humanized Yeast Identifies Atypical Antipsychotic Drugs That Cause Dyslipidemias, Hong Li, Paul N. Black, Aalap Chokshi, Angel Sandoval-Alvarez, Ravi Vatsyayan, Whitney Sealls, Concetta Dirusso Oct 2007

High-Throughput Screening For Fatty Acid Uptake Inhibitors In Humanized Yeast Identifies Atypical Antipsychotic Drugs That Cause Dyslipidemias, Hong Li, Paul N. Black, Aalap Chokshi, Angel Sandoval-Alvarez, Ravi Vatsyayan, Whitney Sealls, Concetta Dirusso

Department of Biochemistry: Faculty Publications

Fatty acids are implicated in the development of dyslipidemias, leading to type 2 diabetes and cardiovascular disease. We used a standardized small compound library to screen humanized yeast to identify compounds that inhibit fatty acid transport protein (FATP)-mediated fatty acid uptake into cells. This screening procedure used live yeast cells expressing human FATP2 to identify small compounds that reduced the import of a fluorescent fatty acid analog, 4,4-difluoro-5-methyl-4-bora-3a,4a-diaza-s-indacene-3-dodecanoic acid (C1-BODIPY-C12). The library used consisted of 2,080 compounds with known biological activities. Of these, ~1.8% reduced cell-associated C1-BODIPY-C12 fluorescence and were selected as potential inhibitors of human FATP2- mediated fatty acid …


Distinct Mechanisms For Ctr1-Mediated Copper And Cisplatin Transport, Devis Sinani, David J. Adle, Heejeong Kim, Jaekwon Lee Sep 2007

Distinct Mechanisms For Ctr1-Mediated Copper And Cisplatin Transport, Devis Sinani, David J. Adle, Heejeong Kim, Jaekwon Lee

Department of Biochemistry: Faculty Publications

The Ctr1 family of integral membrane proteins is necessary for high affinity copper uptake in eukaryotes. Ctr1 is also involved in cellular accumulation of cisplatin, a platinum-based anticancer drug. Although the physiological role of Ctr1 has been revealed, the mechanism of action of Ctr1 remains to be elucidated. To gain a better understanding of Ctr1-mediated copper and cisplatin transport, we have monitored molecular dynamics and transport activities of yeast Saccharomyces cerevisiae Ctr1 and its mutant alleles. Co-expression of functional Ctr1 monomers fused with either cyan or yellow fluorescent protein resulted in fluorescence resonance energy transfer (FRET), which is consistent with …


A Systematic Approach To The Development Of Fluorescent Contrast Agents For Optical Imaging Of Mouse Cancer Models, Joy L. Kovar, Melanie A. Simpson, Amy Schutz-Geschwender, D. Michael Olive Aug 2007

A Systematic Approach To The Development Of Fluorescent Contrast Agents For Optical Imaging Of Mouse Cancer Models, Joy L. Kovar, Melanie A. Simpson, Amy Schutz-Geschwender, D. Michael Olive

Department of Biochemistry: Faculty Publications

In the past decade, our increased elucidation of the molecular basis of cancer has led to the development of novel targeted strategies for specific inhibition of cancer signaling pathways that control growth, proliferation, apoptosis, and angiogenesis. Several monoclonal-antibody-based therapeutics and small-molecule drugs have received clearance for use as human therapeutics [1]. However, among these successes are many candidate drugs that have failed in clinical trials despite promising preclinical results [2]. The development of targeted therapeutics is expensive and time consuming. In their Critical Path Initiative, the United States Food and Drug Administration emphasized the need for more effective tools to …


Purification Method Directly Influences Effectiveness Of An Epidermal Growth Factor-Coupled Targeting Agent For Noninvasive Tumor Detection In Mice, Joy L. Kovar, William M. Volcheck, Jiyan Chen, Melanie A. Simpson Feb 2007

Purification Method Directly Influences Effectiveness Of An Epidermal Growth Factor-Coupled Targeting Agent For Noninvasive Tumor Detection In Mice, Joy L. Kovar, William M. Volcheck, Jiyan Chen, Melanie A. Simpson

Department of Biochemistry: Faculty Publications

Receptor targeting is an effective method of enhancing fluorescence signal in tumors for optical imaging. We previously used epidermal growth factor (EGF) conjugated to IRDye 800CW to detect and track orthotopic prostate tumors in mice. In this study, our goal was to identify a reliable assay for targeting agent integrity in vitro that correlated with signal strength in vivo. Binding of IRDye 800CW EGF to intact A431 human epidermoid carcinoma cells was quantified in a microplate assay. Specificity was confirmed by competition with unlabeled EGF or monoclonal antibody blocking. Biological activity of intact and damaged targeting agents relative to unlabeled …


A Cadmium-Transporting PIb-Type Atpase In Yeast Saccharomyces Cerevisiae, David J. Adle, Devis Sinani, Heejeong Kim, Jaekwon Lee Jan 2007

A Cadmium-Transporting PIb-Type Atpase In Yeast Saccharomyces Cerevisiae, David J. Adle, Devis Sinani, Heejeong Kim, Jaekwon Lee

Department of Biochemistry: Faculty Publications

Detoxification and homeostatic acquisition of metal ions are vital for all living organisms. We have identified PCA1 in yeast Saccharomyces cerevisiae as an overexpression suppressor of copper toxicity. PCA1 possesses signatures of a PIB-type heavy metal-transporting ATPase that is widely distributed from bacteria to humans. Copper resistance conferred by PCA1 is not dependent on catalytic activity, but it appears that a cysteine-rich region located in the N terminus sequesters copper. Unexpectedly, when compared with two independent natural isolates and an industrial S. cerevisiae strain, the PCA1 allele of the common laboratory strains we have examined possesses a missense …


Identification Of Functional Subclasses In The Dj-1 Superfamily Proteins, Ying Wei, Dagmar Ringe, Mark A. Wilson, Mary Jo Ondrechen Jan 2007

Identification Of Functional Subclasses In The Dj-1 Superfamily Proteins, Ying Wei, Dagmar Ringe, Mark A. Wilson, Mary Jo Ondrechen

Department of Biochemistry: Faculty Publications

Genomics has posed the challenge of determination of protein function from sequence and/or 3-D structure. Functional assignment from sequence relationships can be misleading, and structural similarity does not necessarily imply functional similarity. Proteins in the DJ-1 family, many of which are of unknown function, are examples of proteins with both sequence and fold similarity that span multiple functional classes. THEMATICS (theoretical microscopic titration curves), an electrostatics-based computational approach to functional site prediction, is used to sort proteins in the DJ-1 family into different functional classes. Active site residues are predicted for the eight distinct DJ-1 proteins with available 3-D structures. …


Expression, Processing, And Glycosaminoglycan Binding Activity Of The Recombinant Human 315-Kda Hyaluronic Acid Receptor For Endocytosis (Hare), Ed Harris, Svetlana V. Kyosseva, Janet A. Weigel, Paul H. Weigel Jan 2007

Expression, Processing, And Glycosaminoglycan Binding Activity Of The Recombinant Human 315-Kda Hyaluronic Acid Receptor For Endocytosis (Hare), Ed Harris, Svetlana V. Kyosseva, Janet A. Weigel, Paul H. Weigel

Department of Biochemistry: Faculty Publications

The hyaluronic acid (HA) receptor for endocytosis (HARE; also designated stabilin-2 and FEEL-2) mediates systemic clearance of glycosaminoglycans from the circulatory and lymphatic systems via coated pit-mediated uptake. HARE is primarily found as two isoforms (315- and 190-kDa) in sinusoidal endothelial cells of the liver, lymph node, and spleen. Here we characterize the ligand specificity and function of the large stably expressed 315-HARE isoform in Flp-In 293 cell lines. Like human spleen sinusoidal endothelial cells, Flp-In 293 cell lines transfected with a single cDNA encoding the full-length 315-HARE express both the 315-kDa and the proteolytically truncated 190-kDa isoforms in a …


Arabidopsis Thaliana Gh3.9 Influences Primary Root Growth, Sadaf Khan, Julie M. Stone Jan 2007

Arabidopsis Thaliana Gh3.9 Influences Primary Root Growth, Sadaf Khan, Julie M. Stone

Department of Biochemistry: Faculty Publications

Auxins regulate a complex signal transduction network to direct plant development. Auxin-responsive genes fit into three major classes: the so-called auxin/indole- 3-acetic acid (Aux/IAA), the GH3, and the small auxin-up RNA (SAUR) gene families. The 20-member Arabidopsis thaliana GH3 gene family has been subdivided into three groups. In vitro studies have shown that most Group II members function as IAA–amido synthetases to conjugate amino acids to the plant hormone auxin. Here we report the role of a previously uncharacterized GH3 gene family member, GH3.9, in root growth. Unlike most other Group II family members, …


A New Strategy For Assessing Selenoprotein Function: Sirna Knockdown/Knock-In Targeting The 3'-Utr, Min-Hyuk Yoo, Xue-Ming Xu, Anton A. Turanov, Bradley A. Carlson, Vadim N. Gladyshev, Dolph L. Hatfield Jan 2007

A New Strategy For Assessing Selenoprotein Function: Sirna Knockdown/Knock-In Targeting The 3'-Utr, Min-Hyuk Yoo, Xue-Ming Xu, Anton A. Turanov, Bradley A. Carlson, Vadim N. Gladyshev, Dolph L. Hatfield

Department of Biochemistry: Faculty Publications

Selenocysteine insertion into protein in mammalian cells requires RNA elements in the 3'-untranslated regions (3'-UTRs) of selenoprotein genes. The occurrence of these conserved sequences should make selenoproteins particularly amenable for knockdown/knock-in strategies to examine selenoprotein functions. Herein, we utilized the 3'-UTR of various selenoproteins to knock down their expression using siRNAs and then knock in expression using constructs containing mutations within the target region. Thioredoxin reductase 1 (TR1) knockdown in a mouse kidney cell line resulted in the cells growing about 10% more slowly, being more sensitive to UV radiation, and having increased apoptosis in response to UV than control …


Mechanistic Studies Of The Long Chain Acyl-Coa Synthetase Faa1p From Saccharomyces Cerevisiae, Hong Li, Elaina M. Melton, Steven Quackenbush, Concetta C. Dirusso, Paul N. Black Jan 2007

Mechanistic Studies Of The Long Chain Acyl-Coa Synthetase Faa1p From Saccharomyces Cerevisiae, Hong Li, Elaina M. Melton, Steven Quackenbush, Concetta C. Dirusso, Paul N. Black

Department of Biochemistry: Faculty Publications

Long chain acyl-CoA synthetase (ACSL; fatty acid CoA ligase: AMP forming; EC 6.2.1.3) catalyzes the formation of acyl-CoA through a process, which requires fatty acid, ATP and coenzymeA as substrates. In the yeast Saccharomyces cerevisiae the principal ACSL is Faa1p (encoded by the FAA1 gene). The preferred substrates for this enzyme are cis-monounsaturated long chain fatty acids. Our previous work has shown Faa1p is a principal component of a fatty acid transport/activation complex that also includes the fatty acid transport protein Fat1p. In the present work hexameric histidine tagged Faa1p was purified to homogeneity through a two-step process in the …


Evidence For A Pro-Oxidant Intermediate In The Assembly Of Cytochrome Oxidase, Oleh Khalimonchuk, Amanda Bird, Dennis R. Winge Jan 2007

Evidence For A Pro-Oxidant Intermediate In The Assembly Of Cytochrome Oxidase, Oleh Khalimonchuk, Amanda Bird, Dennis R. Winge

Department of Biochemistry: Faculty Publications

The hydrogen peroxide sensitivity of cells lacking two proteins,

Sco1 and Cox11, important in the assembly of cytochrome

c oxidase (CcO), is shown to arise from the transient accumulation

of a pro-oxidant heme A-Cox1 stalled intermediate. The

peroxide sensitivity of these cells is abrogated by a reduction in

either Cox1 expression or hemeAformation but exacerbated by

either enhanced Cox1 expression or heme A production arising

from overexpression of COX15. Sco1 and Cox11 are implicated

in the formation of the CuA and CuB sites of CcO, respectively.

The respective wild-type genes suppress the peroxide sensitivities

of sco1∆ …


Coa1 Links The Mss51 Post-Translational Function To Cox1 Cofactor Insertion In Cytochrome C Oxidase Assembly, Fabien Pierrel, Megan L. Bestwick, Paul A. Cobine, Oleh Khalimonchuk, Julia A. Cricco, Dennis R. Winge Jan 2007

Coa1 Links The Mss51 Post-Translational Function To Cox1 Cofactor Insertion In Cytochrome C Oxidase Assembly, Fabien Pierrel, Megan L. Bestwick, Paul A. Cobine, Oleh Khalimonchuk, Julia A. Cricco, Dennis R. Winge

Department of Biochemistry: Faculty Publications

The assembly of cytochrome c oxidase (CcO) in yeast mitochondria is shown to be dependent on a new assembly factor designated Coa1 that associates with the mitochondrial inner membrane. Translation of the mitochondrial-encoded subunits of CcO occurs normally in coa1Δ cells, but these subunits fail to accumulate. The respiratory defect in coa1Δ cells is suppressed by high-copy MSS51, MDJ1 and COX10. Mss51 functions in Cox1 translation and elongation, whereas Cox10 participates in the biosynthesis of heme a, a key cofactor of CcO. Respiration in coa1Δ and shy1Δ cells is enhanced when Mss51 and …


An Ascorbate-Reducible Cytochrome B561 Is Localized In Macrophage Lysosomes, De-Liang Zhang, Dan Su, Alajos Berczi , Amy Vargas , Han H. Asard Oct 2006

An Ascorbate-Reducible Cytochrome B561 Is Localized In Macrophage Lysosomes, De-Liang Zhang, Dan Su, Alajos Berczi , Amy Vargas , Han H. Asard

Department of Biochemistry: Faculty Publications

Cytochromes b561 (Cyts b561) are a family of intrinsic membrane proteins involved in ascorbate-mediated transmembrane electron transport. The chromaffin granule Cyt b561 (CGCytb) is believed to transport electrons donated by extravesicular ascorbate (ASC) across the membrane to intravesicular monodehydroascorbate (MDA) supporting catecholamine synthesis in neuroendocrine tissues. Another isoform, the duodenal Cyt b561 (Dcytb), was reported to have ferric reductase activity, possibly facilitating intestinal iron uptake. Herein, a new Cyt b561 homologue, LCytb (for lysosomal Cytb561) was found expressed in the late endosomal–lysosomal membrane. LCytb shared high sequence similarity with CGCytb (45% identity) and Dcytb (42% identity). Moreover, four heme-coordinating His …


Hyaluronidase Expression Induces Prostate Tumor Metastasis In An Orthotopic Mouse Model, Joy L. Kovar, Mark A. Johnson, William M. Volcheck, Jiyan Chen, Melanie A. Simpson Oct 2006

Hyaluronidase Expression Induces Prostate Tumor Metastasis In An Orthotopic Mouse Model, Joy L. Kovar, Mark A. Johnson, William M. Volcheck, Jiyan Chen, Melanie A. Simpson

Department of Biochemistry: Faculty Publications

Molecular mechanisms of prostate cancer progression are frequently studied in mice by orthotopic injection of aggressive cell lines, which yield primary tumors that spontaneously metastasize to lymph nodes. In this report, we characterized the human prostate carcinoma cell line 22Rv1 in an orthotopic system and evaluated the functional relevance of the hyaluronidase Hyal1, a correlate of invasive human prostate cancer, to progression in this model. To provide real-time insights into these processes, we first validated use of an epidermal growth factorconjugated fluorophore to illuminate orthotopic prostate tumors and their metastases in whole animal imaging. Animals receiving intraprostatic injections were tracked …


Methods And Materials For Making And Using Transgenic Dicamba-Degrading Organisms, Donald P. Weeks, Xiao-Zhuo Wang, Patricia L. Herman Sep 2006

Methods And Materials For Making And Using Transgenic Dicamba-Degrading Organisms, Donald P. Weeks, Xiao-Zhuo Wang, Patricia L. Herman

Department of Biochemistry: Faculty Publications

The invention provides isolated and at least partially-purified dicamba-degrading enzymes, isolated DNA molecules coding for dicamba-degrading enzymes, DNA constructs coding for dicamba-degrading enzymes, transgenic host cells comprising DNA coding for dicamba-degrading enzymes, and transgenic plants and plant parts comprising one or more cells comprising DNA coding for dicamba-degrading enzymes. Expression of the dicamba-degrading enzymes results in the production of dicamba-degrading organisms, including dicamba-tolerant plants. The invention further provides a method of controlling weeds in a field containing the transgenic dicamba-tolerant plants of the invention and a method of decontaminating a material containing dicamba comprising applying an effective amount of a …


Peroxidase-Dependent Apoplastic Oxidative Burst In Arabidopsis Required For Pathogen Resistance, Laurence V. Bindschedler, Julia Dewdney, Kris A. Blee, Julie M. Stone, Tsuneaki Asai, Julia Plotnikov, Carine Denoux, Tezni Hayes, Chris Gerrish, Dewi R. Davies, Frederick M. Ausubel, G. Paul Bolwell Sep 2006

Peroxidase-Dependent Apoplastic Oxidative Burst In Arabidopsis Required For Pathogen Resistance, Laurence V. Bindschedler, Julia Dewdney, Kris A. Blee, Julie M. Stone, Tsuneaki Asai, Julia Plotnikov, Carine Denoux, Tezni Hayes, Chris Gerrish, Dewi R. Davies, Frederick M. Ausubel, G. Paul Bolwell

Department of Biochemistry: Faculty Publications

The oxidative burst is an early response to pathogen attack leading to the production of reactive oxygen species (ROS) including hydrogen peroxide. Two major mechanisms involving either NADPH oxidases or peroxidases that may exist singly or in combination in different plant species have been proposed for the generation of ROS. We identified an Arabidopsis thaliana azide-sensitive but diphenylene iodonium-insensitive apoplastic oxidative burst that generates H2O2 in response to a Fusarium oxysporum cell-wall preparation. Transgenic Arabidopsis plants expressing an anti-sense cDNA encoding a type III peroxidase, French bean peroxidase type 1 (FBP1) exhibited an impaired oxidative burst and …


Concurrent Expression Of Hyaluronan Biosynthetic And Processing Enzymes Promotes Growth And Vascularization Of Prostate Tumors In Mice, Melanie A. Simpson Jul 2006

Concurrent Expression Of Hyaluronan Biosynthetic And Processing Enzymes Promotes Growth And Vascularization Of Prostate Tumors In Mice, Melanie A. Simpson

Department of Biochemistry: Faculty Publications

Aggressive cells in prostate cancer secrete extracellular hyaluronan (HA) as a result of up-regulated HA synthase enzymes HAS2 and HAS3. Combined detection of HA and the HA processing hyaluronidase enzyme Hyal1 in prostate tumors correlates with poor outcome. HA oligomers produced by hyaluronidases are potent angiogenic stimuli. We investigated the respective roles of HAS2 and Hyal1 using 22Rv1 human prostate tumor cells that lack both enzyme activities. Stable transfectants were selected for overexpression of Hyal1 or HAS2 and for coexpression of Hyal1 and HAS2. HAS2 overexpression elevated HA production and excess pericellular HA retention. However, HAS2-transfected tumor cell growth in …


Sequential Processing Of A Mitochondrial Tandem Protein: Insights Into Protein Import In Schizosaccharomyces Pombe, Oleh Khalimonchuk, Martin Ott, Soledad Funes, Kai Ostermann, Gerhard Rödel, Johannes M. Herrmann Jan 2006

Sequential Processing Of A Mitochondrial Tandem Protein: Insights Into Protein Import In Schizosaccharomyces Pombe, Oleh Khalimonchuk, Martin Ott, Soledad Funes, Kai Ostermann, Gerhard Rödel, Johannes M. Herrmann

Department of Biochemistry: Faculty Publications

The sequencing of the genome of Schizosaccharomyces pombe revealed the presence of a number of genes encoding tandem proteins, some of which are mitochondrial components. One of these proteins (pre-Rsm22- Cox11) consists of a fusion of Rsm22, a component of the mitochondrial ribosome, and Cox11, a factor required for copper insertion into cytochrome oxidase. Since in Saccharomyces cerevisiae, Cox11 is physically attached to the mitochondrial ribosome, it was suggested that the tandem organization of Rsm22-Cox11 is used to covalently tie the mitochondrial ribosome to Cox11 in S. pombe. We report here that pre-Rsm22-Cox11 is matured in two subsequent …


A Characterization Of Subterranean Termites In Nebraska Using Micro-Morphological And Molecular Techniques, Timothy J. Husen, Shripat T. Kamble, Julie M. Stone Jan 2006

A Characterization Of Subterranean Termites In Nebraska Using Micro-Morphological And Molecular Techniques, Timothy J. Husen, Shripat T. Kamble, Julie M. Stone

Department of Biochemistry: Faculty Publications

Recent studies have demonstrated a great potential for the use of molecular biology in Reticulitermes species identification and to study other aspects of termite biology. This study utilized micro-morphological identification and microsatellite Simple Sequence Length Polymorphic (SSLP) DNA genotyping to characterize subterranean termites collected from 73 locations across the state of Nebraska. Morphological characters of soldier termites from 30/73 collection sites revealed the presence of two species, Reticulitermes flavipes (Kollar) and R. tibialis Banks. Morphology of the gular plate ratio was used for species differentiation. Deoxyribonucelic acid (DNA) was extracted from termite workers (from all samples) and used as a …


S-Adenosylmethionine Stabilizes Cystathionine Β-Synthase And Modulates Redox Capacity, Anna Prudova, Zachary Bauman, Aaron Braun, Victor Vitvitsky, Shelly C. Lu, Ruma Banerjee Jan 2006

S-Adenosylmethionine Stabilizes Cystathionine Β-Synthase And Modulates Redox Capacity, Anna Prudova, Zachary Bauman, Aaron Braun, Victor Vitvitsky, Shelly C. Lu, Ruma Banerjee

Department of Biochemistry: Faculty Publications

The transsulfuration pathway converts homocysteine to cysteine and represents the metabolic link between antioxidant and methylation metabolism. The first and committing step in this pathway is catalyzed by cystathionine β-synthase (CBS), which is subject to complex regulation, including allosteric activation by the methyl donor, S-adenosylmethionine (AdoMet). In this study, we demonstrate that methionine restriction leads to a >10-fold decrease in CBS protein levels, and pulse proteolysis studies reveal that binding of AdoMet stabilizes the protein against degradation by ≈12 kcal/mol. These observations predict that under pathological conditions where AdoMet levels are diminished, CBS, and therefore glutathione levels, will be reduced. …


Microsatellite Genotyping To Distinguish Colonies And Intraspecies Genetic Variation In The Eastern Subterranean Termite, Reticulitermes Flavipes (Isoptera: Rhinotermitidae), Timothy J. Husen, Shripat T. Kamble, Julie M. Stone Jan 2006

Microsatellite Genotyping To Distinguish Colonies And Intraspecies Genetic Variation In The Eastern Subterranean Termite, Reticulitermes Flavipes (Isoptera: Rhinotermitidae), Timothy J. Husen, Shripat T. Kamble, Julie M. Stone

Department of Biochemistry: Faculty Publications

Microsatellite markers and fingerprinting techniques have demonstrated great potential for assessing colony affiliation in Reticulitermes species. This study utilized microsatellite allele fingerprints and examined variation at eight micro satellite loci within five different R. flavipes collection sites in each of Lancaster and Madison counties in Nebraska. In the termite populations from Lancaster County, five of the eight microsatellite loci (Rf 1-3, Rf 3-1, Rf 5-1 0, Rf 6-1, and Rf 24-2) provided informative genotypic variability allowing colony distinction. DNA sequence data at locus Rf24-2 also provided conclusive evidence that populations sampled were distinct colonies. Five micro satellite loci (Rf 3-1, …


Purification And Initial Biochemical Characterization Of Atp:Cob(I)Alamin Adenosyltransferase (Eutt) Enzyme Of Salmonella Enterica, Nicole R. Baun, Jorge C. Escalante-Semerena Jan 2006

Purification And Initial Biochemical Characterization Of Atp:Cob(I)Alamin Adenosyltransferase (Eutt) Enzyme Of Salmonella Enterica, Nicole R. Baun, Jorge C. Escalante-Semerena

Department of Biochemistry: Faculty Publications

ATP:cob(I)alamin adenosyltransferase (EutT) of Salmonella

enterica was overproduced and enriched to ~70% homogeneity,

and its basic kinetic parameters were determined. Abundant

amounts of EutT protein were produced, but all of it remained

insoluble. Soluble active EutT protein (~70% homogeneous) was

obtained after treatment with detergent. Under conditions in which

cobalamin (Cbl) was saturating, Km(ATP) = 10 µM, kcat = 0.03 s-1,

and Vmax = 54.5 nM min-1. Similarly, under conditions in which

MgATPwas saturating,Km(Cbl) = 4.1µM, kcat = 0.06 s-1, andVmax= …