Capstone Project

Rubisco Thesis

Structure-Function Studies of Ribulose-1,5-bisphosphate ... Structure-Function Studies of Ribulose-1,5-bisphosphate ...
Rubisco from higher plants consists of eight large, and eight small subunits. This thesis investigates the role of structural elements of Rubisco, spanning from the ...

Rubisco Thesis

. Therefore, these two regions of the large subunit, which sandwich loop 6, are complementary. On the other hand, substitutions in a-helix g of the large subunit reduce the holoenzyme level, and, because mutants with additional substitutions in -helices 7 and 8 cannot be recovered as photosynthetic-transformants, the three helices appear to influence holoenzyme assembly.

Lincoln, nebraska november 2012 thirty-four residues in the large subunit of ribulose-1,5-bisphosphate carboxylaseoxygenase (rubisco) may account for the kinetic differences between rubisco enzyme from green algae and land plants. Although rubisco has been intensively studied, its evolutionary origins and rise as natures most dominant carbon dioxide (co )-fixing enzyme still remain in the dark. We use cookies to help provide and enhance our service and tailor content and ads.

Further study of cysteine methylation and proline hydroxylation showed that mutations of methyl-cys-256 and hydroxy-pro-104 influence catalysis. In this review we will bring together biochemical, structural, physiological, microbiological, as well as phylogenetic data to speculate on the evolutionary roots of the co -fixation reaction of rubisco, the emergence of rubisco-based autotrophic co -fixation in the context of the calvin-benson-bassham cycle, and the further evolution of rubisco into the rubiscosome, a complex of various proteins assembling and interacting with the enzyme to improve its operational capacity (functionality) under different biological and environmental conditions. Among the residues substituted in pentaabso is methyl-cys-256, which indicates that posttranslational modifications of the large subunit may also play a role in catalysis.

By continuing you agree to the elsevier b. A short history of rubisco the rise and fall (?) of natures predominant co rubisco emerged in a non-autotrophic context before the calvin-benson-bassham cycle evolved. Synthetic biology attempts to overcome rubisco and its catalytic imperfections.

The current study complements previous knowledge about rubisco, and provides further structural targets for the beneficial engineering of rubisco. In the present study, through structural dissection, it is concluded that all the residues substituted in pentaabso are required for the shift towards land-plant catalysis. Sciencedirect is a registered trademark of elsevier b.

By substituting these phylogenetic residues as groups and combinations of groups in the large subunit of the green alga with those of land-plant rubisco, the functions and relationships of these phylogenetic groups were determined. In addition, combining substitutions at the base of loop 6 and the largesmall-subunit interface region produces a mutant enzyme that has to be complemented by the land-plant small subunit for function in. Rubisco evolved from a stand-alone enzyme into an enzyme complex, the rubiscosome. Ribulose-1,5-bisphosphate carboxylaseoxygenase (rubisco) is arguably one of the most abundant proteins in the biosphere and a key enzyme in the global carbon cycle. A previous study showed that substituting five large-subunit residues and a small-subunit loop with land-plant identities produced an enzyme (termed pentaabso) with land-plant catalytic properties.


A short history of RubisCO: the rise and fall (?) of Nature's ...


29 Aug 2017 ... RubisCO evolved into Nature's predominant CO2-fixing enzyme in three distinct steps. •. RubisCO evolved ...... (Ph.D. Thesis). The Ohio State ...

Rubisco Thesis

Structural and functional characterization of Rubisco assembly ...
28 Apr 2016 ... I am thankful for the discussions with my thesis advisory committee members Prof . ..... 3.10 Interplay of Raf1 and RbcX in Rubisco assembly .
Rubisco Thesis This Thesis is brought to you for free and open access by the Theses and. •. In this review we will bring together biochemical, structural, physiological, microbiological, as well as phylogenetic data to speculate on the evolutionary roots of the co -fixation reaction of rubisco, the emergence of rubisco-based autotrophic co -fixation in the context of the calvin-benson-bassham cycle, and the further evolution of rubisco into the rubiscosome, D-Ribulose 1,5-bisphosphate carboxylase/oxygenase (RuBisCO) catalyzes carboxylation of D-ribulose 1,5-bisphosphate with. This thesis investigates the role of structural elements of Rubisco, spanning from the . RubisCO evolved into Nature's predominant CO2-fixing enzyme in three distinct steps.
  • "Phylogenetic Engineering of the Ribulose-1,5-bisphosphate ...


    By continuing you agree to the elsevier b. A short history of rubisco the rise and fall (?) of natures predominant co rubisco emerged in a non-autotrophic context before the calvin-benson-bassham cycle evolved. Ribulose-1,5-bisphosphate carboxylaseoxygenase (rubisco) is arguably one of the most abundant proteins in the biosphere and a key enzyme in the global carbon cycle. A previous study showed that substituting five large-subunit residues and a small-subunit loop with land-plant identities produced an enzyme (termed pentaabso) with land-plant catalytic properties. We use cookies to help provide and enhance our service and tailor content and ads.

    The current study complements previous knowledge about rubisco, and provides further structural targets for the beneficial engineering of rubisco. In this review we will bring together biochemical, structural, physiological, microbiological, as well as phylogenetic data to speculate on the evolutionary roots of the co -fixation reaction of rubisco, the emergence of rubisco-based autotrophic co -fixation in the context of the calvin-benson-bassham cycle, and the further evolution of rubisco into the rubiscosome, a complex of various proteins assembling and interacting with the enzyme to improve its operational capacity (functionality) under different biological and environmental conditions. Sciencedirect is a registered trademark of elsevier b. A phylogenetic-group substitution at the base of catalytic loop 6 of the large subunit decreases the co specificity of the enzyme, but function is restored by a further phylogenetic-group substitution at the carboxy-terminal tail. In addition, combining substitutions at the base of loop 6 and the largesmall-subunit interface region produces a mutant enzyme that has to be complemented by the land-plant small subunit for function in.

    Further study of cysteine methylation and proline hydroxylation showed that mutations of methyl-cys-256 and hydroxy-pro-104 influence catalysis. Among the residues substituted in pentaabso is methyl-cys-256, which indicates that posttranslational modifications of the large subunit may also play a role in catalysis. On the other hand, substitutions in a-helix g of the large subunit reduce the holoenzyme level, and, because mutants with additional substitutions in -helices 7 and 8 cannot be recovered as photosynthetic-transformants, the three helices appear to influence holoenzyme assembly. By substituting these phylogenetic residues as groups and combinations of groups in the large subunit of the green alga with those of land-plant rubisco, the functions and relationships of these phylogenetic groups were determined. Synthetic biology attempts to overcome rubisco and its catalytic imperfections. Rubisco evolved from a stand-alone enzyme into an enzyme complex, the rubiscosome. Phylogenetic engineering of the ribulose-1,5-bisphosphate carboxylaseoxygenase large subunit in a dissertation presented to the faculty of the graduate college of the university of nebraska in partial fulfillment of requirements for the degree of doctor of philosophy, major biochemistry, under the supervision of professor robert j. In the present study, through structural dissection, it is concluded that all the residues substituted in pentaabso are required for the shift towards land-plant catalysis. Therefore, these two regions of the large subunit, which sandwich loop 6, are complementary. Lincoln, nebraska november 2012 thirty-four residues in the large subunit of ribulose-1,5-bisphosphate carboxylaseoxygenase (rubisco) may account for the kinetic differences between rubisco enzyme from green algae and land plants.

    The current study complements previous knowledge about Rubisco, and provides further structural targets for the ... Theses and Dissertations in Biochemistry ...

    Studies of the rubisco oxygenase reaction using ... - Research Online

    University of Wollongong Thesis Collections. 1996. Studies of the rubisco oxygenase reaction using mn2+-dependent luminescence. Sean Cox. University of ...
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    Further study of cysteine methylation and proline hydroxylation showed that mutations of methyl-cys-256 and hydroxy-pro-104 influence catalysis. Synthetic biology attempts to overcome rubisco and its catalytic imperfections. Although rubisco has been intensively studied, its evolutionary origins and rise as natures most dominant carbon dioxide (co )-fixing enzyme still remain in the dark. Therefore, these two regions of the large subunit, which sandwich loop 6, are complementary. A phylogenetic-group substitution at the base of catalytic loop 6 of the large subunit decreases the co specificity of the enzyme, but function is restored by a further phylogenetic-group substitution at the carboxy-terminal tail Buy now Rubisco Thesis

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    Lincoln, nebraska november 2012 thirty-four residues in the large subunit of ribulose-1,5-bisphosphate carboxylaseoxygenase (rubisco) may account for the kinetic differences between rubisco enzyme from green algae and land plants. Sciencedirect is a registered trademark of elsevier b. Therefore, these two regions of the large subunit, which sandwich loop 6, are complementary. We use cookies to help provide and enhance our service and tailor content and ads. Further study of cysteine methylation and proline hydroxylation showed that mutations of methyl-cys-256 and hydroxy-pro-104 influence catalysis.

    Among the residues substituted in pentaabso is methyl-cys-256, which indicates that posttranslational modifications of the large subunit may also play a role in catalysis Rubisco Thesis Buy now

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    Ribulose-1,5-bisphosphate carboxylaseoxygenase (rubisco) is arguably one of the most abundant proteins in the biosphere and a key enzyme in the global carbon cycle. The current study complements previous knowledge about rubisco, and provides further structural targets for the beneficial engineering of rubisco. Further study of cysteine methylation and proline hydroxylation showed that mutations of methyl-cys-256 and hydroxy-pro-104 influence catalysis. A phylogenetic-group substitution at the base of catalytic loop 6 of the large subunit decreases the co specificity of the enzyme, but function is restored by a further phylogenetic-group substitution at the carboxy-terminal tail. In the present study, through structural dissection, it is concluded that all the residues substituted in pentaabso are required for the shift towards land-plant catalysis Buy Rubisco Thesis at a discount

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    In the present study, through structural dissection, it is concluded that all the residues substituted in pentaabso are required for the shift towards land-plant catalysis. A previous study showed that substituting five large-subunit residues and a small-subunit loop with land-plant identities produced an enzyme (termed pentaabso) with land-plant catalytic properties. In addition, combining substitutions at the base of loop 6 and the largesmall-subunit interface region produces a mutant enzyme that has to be complemented by the land-plant small subunit for function in. Further study of cysteine methylation and proline hydroxylation showed that mutations of methyl-cys-256 and hydroxy-pro-104 influence catalysis Buy Online Rubisco Thesis

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    Among the residues substituted in pentaabso is methyl-cys-256, which indicates that posttranslational modifications of the large subunit may also play a role in catalysis. Although rubisco has been intensively studied, its evolutionary origins and rise as natures most dominant carbon dioxide (co )-fixing enzyme still remain in the dark. In the present study, through structural dissection, it is concluded that all the residues substituted in pentaabso are required for the shift towards land-plant catalysis. We use cookies to help provide and enhance our service and tailor content and ads. Rubisco evolved from a stand-alone enzyme into an enzyme complex, the rubiscosome.

    The current study complements previous knowledge about rubisco, and provides further structural targets for the beneficial engineering of rubisco Buy Rubisco Thesis Online at a discount

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    Further study of cysteine methylation and proline hydroxylation showed that mutations of methyl-cys-256 and hydroxy-pro-104 influence catalysis. Rubisco evolved from a stand-alone enzyme into an enzyme complex, the rubiscosome. Ribulose-1,5-bisphosphate carboxylaseoxygenase (rubisco) is arguably one of the most abundant proteins in the biosphere and a key enzyme in the global carbon cycle. We use cookies to help provide and enhance our service and tailor content and ads. Sciencedirect is a registered trademark of elsevier b.

    Lincoln, nebraska november 2012 thirty-four residues in the large subunit of ribulose-1,5-bisphosphate carboxylaseoxygenase (rubisco) may account for the kinetic differences between rubisco enzyme from green algae and land plants Rubisco Thesis For Sale

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    Although rubisco has been intensively studied, its evolutionary origins and rise as natures most dominant carbon dioxide (co )-fixing enzyme still remain in the dark. The current study complements previous knowledge about rubisco, and provides further structural targets for the beneficial engineering of rubisco. On the other hand, substitutions in a-helix g of the large subunit reduce the holoenzyme level, and, because mutants with additional substitutions in -helices 7 and 8 cannot be recovered as photosynthetic-transformants, the three helices appear to influence holoenzyme assembly. A short history of rubisco the rise and fall (?) of natures predominant co rubisco emerged in a non-autotrophic context before the calvin-benson-bassham cycle evolved For Sale Rubisco Thesis

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    Therefore, these two regions of the large subunit, which sandwich loop 6, are complementary. Ribulose-1,5-bisphosphate carboxylaseoxygenase (rubisco) is arguably one of the most abundant proteins in the biosphere and a key enzyme in the global carbon cycle. Although rubisco has been intensively studied, its evolutionary origins and rise as natures most dominant carbon dioxide (co )-fixing enzyme still remain in the dark. Phylogenetic engineering of the ribulose-1,5-bisphosphate carboxylaseoxygenase large subunit in a dissertation presented to the faculty of the graduate college of the university of nebraska in partial fulfillment of requirements for the degree of doctor of philosophy, major biochemistry, under the supervision of professor robert j Sale Rubisco Thesis

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