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1.
Biochim Biophys Acta ; 1481(1): 55-62, 2000 Aug 31.
Artigo em Inglês | MEDLINE | ID: mdl-10962092

RESUMO

Structural changes in subfragment 1 of skeletal muscle myosin were investigated by cross-linking trypsin-cleaved S1 with 1-ethyl-3-(3-dimethylaminopropyl)carbodiimide. In the absence of nucleotide the alkali light chains are cross-linked to the 27 kDa heavy chain fragment; the presence of MgATP reduces the efficiency of this reaction. On the other hand, MgATP promotes the cross-link formation between the N-terminal 27 kDa and C-terminal 20 kDa fragments of the heavy chain. The chemical cleavage of the cross-linked heavy chains fragments with N-chlorosuccinimide and hydroxylamine indicates that the cross-links are formed between the regions spanning residues 131-204 and 699-809. These results indicate that the two regions of the heavy chain that are relatively distant in nucleotide-free skeletal S1 [Rayment et al. (1993) Science 261, 50-58] can potentially interact upon addition of nucleotide.


Assuntos
Miosinas/química , Trifosfato de Adenosina , Antracenos , Reagentes de Ligações Cruzadas , Etildimetilaminopropil Carbodi-Imida , Corantes Fluorescentes , Modelos Moleculares , Cadeias Pesadas de Miosina/química , Cadeias Leves de Miosina/química , Subfragmentos de Miosina/química , Miosinas/genética , Nucleotídeos , Fragmentos de Peptídeos/química , Conformação Proteica , Succinimidas , Tripsina
2.
Biophys J ; 77(1): 373-85, 1999 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-10388764

RESUMO

Conformational changes in subdomain 2 of actin were investigated using fluorescence probes dansyl cadaverine (DC) or dansyl ethylenediamine (DED) covalently attached to Gln41. Examination of changes in the fluorescence emission spectra as a function of time during Ca2+/Mg2+ and ATP/ADP exchange at the high-affinity site for divalent cation-nucleotide complex in G-actin confirmed a profound influence of the type of nucleotide but failed to detect a significant cation-dependent difference in the environment of Gln41. No significant difference between Ca- and Mg-actin was also seen in the magnitude of the fluorescence changes resulting from the polymerization of these two actin forms. Evidence is presented that earlier reported cation-dependent differences in the conformation of the loop 38-52 may be related to time-dependent changes in the conformation of subdomain 2 in DED- or DC-labeled G-actin, accelerated by substitution of Mg2+ for Ca2+ in CaATP-G-actin and, in particular, by conversion of MgATP- into MgADP-G-actin. These spontaneous changes are associated with a denaturation-driven release of the bound nucleotide that is promoted by two effects of DED or DC labeling: lowered affinity of actin for nucleotide and acceleration of ATP hydrolysis on MgATP-G-actin that converts it into a less stable MgADP form. Evidence is presented that the changes in the environment of Gln41 accompanying actin polymerization result in part from the release of Pi after the hydrolysis of ATP on the polymer. A similarity of this change to that accompanying replacement of the bound ATP with ADP in G-actin is discussed.


Assuntos
Actinas/química , Conformação Proteica , Difosfato de Adenosina/química , Trifosfato de Adenosina/química , Animais , Cadaverina/análogos & derivados , Cálcio/química , Cátions Bivalentes/farmacologia , Compostos de Dansil , Etilenodiaminas , Corantes Fluorescentes , Glutamina/química , Cinética , Magnésio/química , Músculo Esquelético/metabolismo , Nucleotídeos/farmacologia , Ligação Proteica , Desnaturação Proteica , Coelhos , Espectrometria de Fluorescência
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