scholarly article | Q13442814 |
P356 | DOI | 10.1126/SCIENCE.8235623 |
P698 | PubMed publication ID | 8235623 |
P2093 | author name string | X Li | |
Y Wu | |||
D Z Zhang | |||
R S Boston | |||
V R Franceschi | |||
J W Gillikin | |||
T W Okita | |||
P433 | issue | 5136 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 1054-1056 | |
P577 | publication date | 1993-11-01 | |
P1433 | published in | Science | Q192864 |
P1476 | title | Rice prolamine protein body biogenesis: a BiP-mediated process | |
P478 | volume | 262 |
Q58788644 | A conserved motif is essential for the correct assembly of proglutelins and for their export from the endoplasmic reticulum in rice endosperm |
Q34019816 | A cost-effective ELP-intein coupling system for recombinant protein purification from plant production platform |
Q43168400 | A green fluorescent protein fused to rice prolamin forms protein body-like structures in transgenic rice |
Q38350038 | A phaseolin domain involved directly in trimer assembly is a determinant for binding by the chaperone BiP. |
Q54182929 | Accumulation of 15-Kilodalton Zein in Novel Protein Bodies in Transgenic Tobacco |
Q44881047 | Accumulation of rice prolamin-GFP fusion proteins induces ER-derived protein bodies in transgenic rice calli |
Q45279188 | BiP and zein binding domains within the delta zein protein |
Q48076260 | Binding-protein expression is subject to temporal, developmental and stress-induced regulation in terminally differentiated soybean organs |
Q81326575 | Calreticulin mRNA and protein are localized to protein bodies in storage maize callus cells |
Q37856108 | Chaperones and foldases in endoplasmic reticulum stress signaling in plants |
Q73808104 | Coexpression of the maize delta-zein and beta-zein genes results in stable accumulation of delta-zein in endoplasmic reticulum-derived protein bodies formed by beta-zein |
Q43964356 | Comparative study of wheat low-molecular-weight glutenin and α-gliadin trafficking in tobacco cells |
Q52202620 | Comparison of the expression patterns of genes coding for wheat gluten proteins and proteins involved in the secretory pathway in developing caryopses of wheat |
Q37530053 | Comprehensive proteomic analysis of developing protein bodies in maize (Zea mays) endosperm provides novel insights into its biogenesis |
Q47979714 | Coordinate and non-coordinate expression of the stress 70 family and other molecular chaperones at high and low temperature in spinach and tomato |
Q33827231 | Delivery of Prolamins to the Protein Storage Vacuole in Maize Aleurone Cells |
Q77304424 | Deposition of storage proteins |
Q53271423 | Distinct roles of protein disulfide isomerase and P5 sulfhydryl oxidoreductases in multiple pathways for oxidation of structurally diverse storage proteins in rice |
Q35948440 | Diversity and formation of endoplasmic reticulum-derived compartments in plants. Are these compartments specific to plant cells? |
Q37139275 | Effects of reduced prolamin on seed storage protein composition and the nutritional quality of rice |
Q33878999 | Emerging features of ER resident J-proteins in plants |
Q33403626 | Eukaryotic protein production in designed storage organelles |
Q74270791 | Evidence for a Cytoskeleton-Associated Binding Site Involved in Prolamine mRNA Localization to the Protein Bodies in Rice Endosperm Tissue1 |
Q43795653 | Expression of a new chimeric protein with a highly repeated sequence in tobacco cells |
Q48065939 | Expression of protein disulfide isomerase is elevated in the endosperm of the maize floury-2 mutant |
Q45815878 | GLUTELIN PRECURSOR ACCUMULATION3 encodes a regulator of post-Golgi vesicular traffic essential for vacuolar protein sorting in rice endosperm |
Q41437251 | Higher accumulation of F1-V fusion recombinant protein in plants after induction of protein body formation |
Q39642739 | Impaired Secretion of a Hydrophobic Cutinase by Saccharomyces cerevisiae Correlates with an Increased Association with Immunoglobulin Heavy-Chain Binding Protein (BiP) |
Q33491793 | Induction of protein body formation in plant leaves by elastin-like polypeptide fusions |
Q73401379 | Lysine-rich modified gamma-zeins accumulate in protein bodies of transiently transformed maize endosperms |
Q44593670 | Messenger RNA targeting of rice seed storage proteins to specific ER subdomains |
Q70812099 | Methods for isolation and analysis of the cytoskeleton |
Q41288781 | Molecular chaperones and protein folding in plants |
Q34306614 | Molecular cloning, phylogenetic analysis, and expression profiling of endoplasmic reticulum molecular chaperone BiP genes from bread wheat (Triticum aestivum L.). |
Q28363935 | Native and artificial reticuloplasmins co-accumulate in distinct domains of the endoplasmic reticulum and in post-endoplasmic reticulum compartments |
Q44874682 | Novel components of the plant cytoskeleton: a beginning to plant 'cytomics' |
Q37239824 | Oxidative protein-folding systems in plant cells |
Q36852244 | P5-type sulfhydryl oxidoreductase promotes the sorting of proteins to protein body I in rice endosperm cells |
Q78760176 | Physical methods |
Q46247759 | Protein Bodies in Nature and Biotechnology |
Q38229495 | Protein accumulation in aleurone cells, sub-aleurone cells and the center starch endosperm of cereals |
Q35948428 | Protein quality control mechanisms and protein storage in the endoplasmic reticulum. A conflict of interests? |
Q95297204 | Protein storage bodies and vacuoles |
Q33538912 | Protein transport within the plant cell endomembrane system: an update |
Q35928002 | Proteomic characterisation of endoplasmic reticulum-derived protein bodies in tobacco leaves |
Q42861049 | Reducing rice seed storage protein accumulation leads to changes in nutrient quality and storage organelle formation |
Q79240845 | Retention of a bean phaseolin/maize gamma-Zein fusion in the endoplasmic reticulum depends on disulfide bond formation |
Q38061460 | Role of Non-prolamin Proteins and Low Molecular Weight Redox Agents in Protein Folding and Polymerization in Wheat Grains and Influence on Baking Quality Parameters |
Q24674134 | Seed storage proteins: structures and biosynthesis |
Q39199477 | Successful transport to the vacuole of heterologously expressed mung bean 8S globulin occurs in seed but not in vegetative tissues |
Q82070804 | The binding protein BiP attenuates stress-induced cell death in soybean via modulation of the N-rich protein-mediated signaling pathway |
Q50775929 | The critical role of disulfide bond formation in protein sorting in the endosperm of rice |
Q43979171 | The endoplasmic reticulum binding protein BiP displays dual function in modulating cell death events. |
Q38550161 | The endoplasmic reticulum of plant cells and its role in protein maturation and biogenesis of oil bodies |
Q95297208 | The endoplasmic reticulum-gateway of the secretory pathway |
Q37879991 | The formation, function and fate of protein storage compartments in seeds. |
Q46553782 | The intracellular fate of a recombinant protein is tissue dependent |
Q71959832 | The maize gamma-zein sequesters alpha-zein and stabilizes its accumulation in protein bodies of transgenic tobacco endosperm |
Q43957843 | The rice mutant esp2 greatly accumulates the glutelin precursor and deletes the protein disulfide isomerase |
Q38394667 | The trafficking pathway of a wheat storage protein in transgenic rice endosperm |
Q90487174 | Towards coeliac-safe bread |
Q95433061 | Transport of Storage Proteins to Protein Storage Vacuoles Is Mediated by Large Precursor-Accumulating Vesicles |
Q41288792 | Transport of proteins in eukaryotic cells: more questions ahead |
Q74817410 | Two Structural Domains Mediate Two Sequential Events in [gamma]-Zein Targeting: Protein Endoplasmic Reticulum Retention and Protein Body Formation |
Q77809718 | Zein protein interactions, rather than the asymmetric distribution of zein mRNAs on endoplasmic reticulum membranes, influence protein body formation in maize endosperm |
Q45122059 | Zeolin. A new recombinant storage protein constructed using maize gamma-zein and bean phaseolin |
Q37370092 | {alpha}' Subunit of soybean {beta}-conglycinin forms complex with rice glutelin via a disulphide bond in transgenic rice seeds |
Search more.