scholarly article | Q13442814 |
P50 | author | Elisar Barbar | Q42562609 |
P2093 | author name string | Afua Nyarko | |
Thomas S Hays | |||
Michael Hare | |||
Matthew Talbott | |||
P2860 | cites work | Cytoplasmic dynein regulation by subunit heterogeneity and its role in apical transport | Q24291366 |
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The molecular motor toolbox for intracellular transport | Q28211349 | ||
Structure of Tctex-1 and its interaction with cytoplasmic dynein intermediate chain | Q28506995 | ||
Rhodopsin's carboxy-terminal cytoplasmic tail acts as a membrane receptor for cytoplasmic dynein by binding to the dynein light chain Tctex-1 | Q28508578 | ||
Localization of Tctex-1, a cytoplasmic dynein light chain, to the Golgi apparatus and evidence for dynein complex heterogeneity | Q28511577 | ||
The Tctex1/Tctex2 class of dynein light chains. Dimerization, differential expression, and interaction with the LC8 protein family | Q28512595 | ||
The dynein light chain Tctex-1 has a dynein-independent role in actin remodeling during neurite outgrowth | Q28580100 | ||
Determination and analysis of urea and guanidine hydrochloride denaturation curves | Q29616644 | ||
Denaturant m values and heat capacity changes: relation to changes in accessible surface areas of protein unfolding | Q29620340 | ||
Drosophila roadblock and Chlamydomonas LC7: a conserved family of dynein-associated proteins involved in axonal transport, flagellar motility, and mitosis | Q30442054 | ||
Matching theory and experiment in protein folding | Q33632665 | ||
Theory and application of fluorescence homotransfer to melittin oligomerization | Q34047406 | ||
Molecular dynamics simulations in biology | Q34239646 | ||
Cytoplasmic dynein subunit heterogeneity: implications for axonal transport | Q34315410 | ||
Fluorescence of Lysozyme: Emissions from Tryptophan Residues 62 and 108 and Energy Migration | Q34702789 | ||
Motoring around the Golgi | Q34932451 | ||
Sequential vs. parallel protein-folding mechanisms: experimental tests for complex folding reactions | Q35028520 | ||
Dynein: An ancient motor protein involved in multiple modes of transport | Q35620191 | ||
The Drosophila tctex-1 light chain is dispensable for essential cytoplasmic dynein functions but is required during spermatid differentiation | Q35918261 | ||
The importance of being dimeric | Q36000903 | ||
Equilibrium denaturation studies of mouse beta-nerve growth factor | Q36277556 | ||
Tryptophan replacements in the trp aporepressor from Escherichia coli: probing the equilibrium and kinetic folding models | Q36277717 | ||
Drosophila cytoplasmic dynein, a microtubule motor that is asymmetrically localized in the oocyte | Q36534981 | ||
Analysis of multidimensional spectroscopic data to monitor unfolding of proteins | Q36712623 | ||
The use of fluorescence methods to monitor unfolding transitions in proteins | Q39454755 | ||
Conformational stability of dimeric proteins: quantitative studies by equilibrium denaturation | Q40529724 | ||
Cytoplasmic dynein contains a family of differentially expressed light chains | Q40999715 | ||
Interaction of p59fyn kinase with the dynein light chain, Tctex-1, and colocalization during cytokinesis | Q41015048 | ||
Use of protein unfolding studies to determine the conformational and dimeric stabilities of HIV-1 and SIV proteases | Q41778192 | ||
Different unfolding pathways for mesophilic and thermophilic homologues of serine hydroxymethyltransferase | Q42684571 | ||
Dimerization and folding of LC8, a highly conserved light chain of cytoplasmic dynein | Q43591579 | ||
Interactions of cytoplasmic dynein light chains Tctex-1 and LC8 with the intermediate chain IC74. | Q43932816 | ||
Folding mechanism of FIS, the intertwined, dimeric factor for inversion stimulation | Q44708261 | ||
Dynein light chain LC8 promotes assembly of the coiled-coil domain of swallow protein | Q44839762 | ||
raf RBD and ubiquitin proteins share similar folds, folding rates and mechanisms despite having unrelated amino acid sequences | Q44955754 | ||
Equilibrium dissociation and unfolding of the Arc repressor dimer | Q44993304 | ||
Ionization of His 55 at the dimer interface of dynein light-chain LC8 is coupled to dimer dissociation | Q46771320 | ||
Toward understanding tryptophan fluorescence in proteins | Q47839130 | ||
Subunit interactions provide a significant contribution to the stability of the dimeric four-alpha-helical-bundle protein ROP. | Q52397305 | ||
Crystal structure of dynein light chain TcTex-1. | Q52655171 | ||
Glutaraldehyde as a protein cross-linking reagent | Q56813888 | ||
Folding and stability of trp aporepressor from Escherichia coli | Q68577407 | ||
Solution structure of the Tctex1 dimer reveals a mechanism for dynein-cargo interactions | Q81376876 | ||
P433 | issue | 22 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 6793-6800 | |
P577 | publication date | 2006-06-01 | |
P1433 | published in | Biochemistry | Q764876 |
P1476 | title | Folding is coupled to dimerization of Tctex-1 dynein light chain | |
P478 | volume | 45 |
Q42265916 | Characterization of the human dynein light chain Rp3 and its use as a non-viral gene delivery vector |
Q24298874 | Interaction of the DYNLT (TCTEX1/RP3) light chains and the intermediate chains reveals novel intersubunit regulation during assembly of the dynein complex |
Q27657450 | Multivalency in the Assembly of Intrinsically Disordered Dynein Intermediate Chain |
Q47070784 | Potential role for phosphorylation in differential regulation of the assembly of dynein light chains |
Q34314714 | Slow, reversible, coupled folding and binding of the spectrin tetramerization domain |
Q48290393 | Tctex-1 controls ciliary resorption by regulating branched actin polymerization and endocytosis. |
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