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Evidence for a membrane skeleton in higher plants. A spectrin-like polypeptide co-isolates with rice root plasma membranes.

A fraction enriched in plasma membranes was isolated from rice roots by differential centrifugation and aqueous polymer two-phase partitioning. Analysis of the fraction by SDS-PAGE showed the presence of several low mobility polypeptides (M(r) > 100 kDa). One of these polypeptides (M(r) approximately 230 kDa) was specifically recognized by polyclonal antibodies to human erythrocyte spectrin. This finding suggests that a higher plant spectrin-based membrane skeleton may be preserved and studied using high-purity plasma membrane fractions obtained by aqueous polymer two-phase partitioning.

Adenosine Triphosphatases↗

The spectrin repeat folds into a three-helix bundle in solution.

Spectrin, a major component of the membrane skeleton, is mainly composed of tandemly repeated segments of approx. 106 amino acids. We have undertaken the determination of the three-dimensional structure of a chicken brain alpha-spectrin repeat by heteronuclear multidimensional NMR. Sedimentation equilibrium demonstrates that this repeat is monomeric at the concentration used for NMR (1 mM). Its secondary structure was identified using a collection of sequential and medium range NOEs, chemical shifts, HN-Halpha coupling constants, and relaxation measurements. These data unequivocally demonstrate the presence of three long helices connected by two loops. A set of interhelical NOEs indicates that the helices assemble into a triple helical structure. Our results provide experimental evidence supporting the triple-helical bundle proposed by modelling.

Amino Acid Sequence↗

Enhancement of self-association of human spectrin by polyethylene glycol.

1. In the presence of polyethylene glycol, the self-association of human spectrin is enhanced in a manner that depends approx. exponentially on the mass concentration of polyethylene glycol. 2. For a given mass concentration, the enhancement is independent of the molecular weight of the polyethylene glycol. 3. These data are consistent with the operation of excluded volume effects, and support the contention that the association of spectrin is likely to be increased in the presence of the high concentration of hemoglobin within the erythrocyte in vivo.

Binding Sites↗

Absence of dystrophin and spectrin in regenerating muscle fibers from Becker dystrophy patients.

We studied muscle biopsies from 36 Becker muscular dystrophy patients, and correlated dystrophin negative fibers with regenerating and degenerating myofibers. Dystrophin immunohistochemistry was used to identify dystrophin-negative and dystrophin-positive fibers. Immunohistochemical staining for fetal myosin and acid ATPase identified regenerating fibers, and calcium glioxalate and beta-spectrin staining identified necrotic fibers. All Becker biopsies contained detectable dystrophin in the majority of muscle fibers. 13 cases (36%) showed no dystrophin negative fibers, 9 cases (25%) showed a generalized, markedly decreased immunostaining pattern, and 14 cases (39%) showed a subset of dystrophin negative fibers (0.3-8% of total). Most dystrophin-negative fibers in Becker muscle were judged to be in the process of regeneration, and not in degeneration. No correlation was observed between the age of the patients and number of dystrophin negative fibers. We conclude that the absence of dystrophin and spectrin labeling in some BMD myofibers is associated with regeneration, probably due to incomplete expression of dystrophin secondary to myofibers immaturity. Our results might be explained by a developmental delayed expression of these two proteins, or by abnormal assembling in membrane's components during regeneration in dystrophy. Furthermore, our results rationalize the recently reported finding of some dystrophin-negative fibers in polymyositis.

Adolescent↗

An F-actin- and calmodulin-binding protein from isolated intestinal brush borders has a morphology related to spectrin.

A high molecular weight protein from the brush border of chicken intestinal epithelial cells has been purified. This protein (TW 260/240), a complex of two polypeptides with apparent molecular weights of 260,000 and 240,000, accounts for a significant amount of the terminal web organization. TW 260/240 is an F-actin-binding protein that also interacts with calmodulin. Rotary shadowing reveals long flexible rods of double-stranded morphology tightly connected at each end. TW 260/240 is quite distinct from smooth muscle filamin and macrophage actin-binding protein (APB), but, in spite of its higher contour length (265 nm), seems to be related to erythrocyte spectrin (194 nm for the tetramer). Immunofluorescence microscopy with antibodies against TW 260/240 indicates the existence of a submembranous organization distinctly different from that of stress fibers. We have compared TW 260/240 with fodrin, a brain protein known to occur in submembranous organization but not previously characterized in molecular terms. TW 260/240 and fodrin are clearly distinct molecules but are similar in many aspects. Ultrastructural, biochemical and immunological results indicate three distinct classes of rod-like high molecular weight actin-binding proteins, possibly reflected by the prototypes filamin (ABP), spectrin and TW 260/240 (fodrin). The latter group may be responsible for calmodulin control of submembranous microfilament structures in various nonmuscle cells.

Actins↗

Structural analysis of homologous repeated domains in alpha-actinin and spectrin.

The amino acid sequences of chick and slime mould alpha-actinin each contain four repeats of approximately 122 residues. These repeats are homologous to the 18-22 repeats, each of approximately 106 residues, found in the alpha and beta subunits of spectrin and fodrin, and to the multiple repeats of approximately 110 residues found in the Duchenne muscular dystrophy protein (dystrophin). The repeats correspond to the elongated rod-like portion of these molecules. We present a multiple sequence alignment of 21 repeats from this superfamily (8 alpha-actinin and 13 spectrin/fodrin), based on optimal pairwise alignments, from which a characteristic consensus pattern of amino acid types is deduced. Trp 46 is invariant in all but one repeat, and physicochemical classes of amino acids are conserved at 25 other positions. Secondary structure prediction on both the alpha-actinin and spectrin repeats taken together with the distribution of proline residues in the sequences, strongly suggest that each repeated domain consists of a four-helix structure. Our predictions differ significantly from previous three-helix models based on analyses of fewer sequences. To determine possible interdomain regions, sites of limited proteolysis of the native chick alpha-actinin dimer were determined and located in the amino acid sequence. The majority of these sites were in corresponding positions in different repeats within a segment predicted as a long helix. We propose a model, consistent with the overall dimensions of the rod-like portions of the molecules, in which these long, probably interrupted helices, link adjacent domains.

Actinin↗

Tb3+ binding to human erythrocyte spectrin resulting in conformation change and aggregation.

The Tb3+ binding to spectrin tetramer (SPT) was studied by Tb3+ fluorescence titration and CD spectra. The results indicated that the total high-affinity Tb3+ binding sites are n1 = 330, with average Kd = 3.6 x 10(-6) M. Among them, ca. 90 sites are of higher affinity and are probably more specific to Tb3+ than the remaining sites. There are 520 low affinity Tb3+ binding sites with average Kd = 1.5 x 10(-5) M. Fluorescence and CD spectra revealed that the alpha-helix content of SPT decreased with Tb3+ binding to specific sites and further binding did not result in conformation change. Tb3+ binding to SPT and the subsequent reactions were studied by employing stopped-flow fluorescence and light scattering methods. The studies demonstrate that this is a multistep reaction assembly: high-affinity terbium binding-conformation change-aggregation-low-affinity terbium binding--the second conformation change. The critical Tb3+ concentration-induced spectrin dimer (SPD) aggregation was determined with a light scattering method.

Binding Sites↗

Sodium butyrate induces major morphological changes in C6 glioma cells that are correlated with increased synthesis of a spectrin-like protein.

Butyrate induced flattening and development of cell processes in rat glioma (C6) cells and this change was correlated with an increase in the synthesis of a polypeptide doublet with an apparent molecular weight of about 200 kDa. Blot analysis revealed that at least one of these polypeptides was a spectrin-like protein. Indirect immunofluorescence studies with the spectrin antiserum indicated that the antigen was present in the cell bodies, and also in the cell processes. Thus fodrin may be one the major targets for the action of butyrate on C6 cells.

Autoradiography↗

Effect of treatment with difluoromethylornithine on polyamine and spectrin breakdown levels in neonatal rat brain.

Impairment of polyamine synthesis by treatment with difluoromehtylornithine (DFMO), an irreversible inhibitor of ornithine decarboxylase, has been shown to alter normal brain development. In the present study we determined the effect of DFMO treatment during a discrete developmental period on polyamine levels and on the in situ activity of calpain, as reflected by the level of degradation of spectrin, in various brain regions of rat pups. DFMO treatment from postnatal days 5 to 10 produced a marked decrease in putrescine levels in every brain structure and a significant decrease in spectrin breakdown levels in hippocampus and cortex but not in cerebellum. The results indicate that the ODC/polyamine pathway partly regulates the in situ activity of calpain and that polyamines may play a role in both growth and degeneration phenomena.

Animals↗

Antibodies to human brain spectrin in Alzheimer's disease.

We investigated the existence of antibodies in sera of Alzheimer's disease patients which immunoreact with specific antigens from crude human brain extracts. We found that 49% of patients, per only 5% of control subjects, had increased levels of antibodies to a 240 kDa protein. On the basis of immunological criteria and internal amino acid sequencing, this antigen was identified as brain spectrin, a cytoskeletal protein which appears to be implicated in synaptic plasticity. Our data raises the possibility that anti-spectrin antibodies could be implicated in Alzheimer's disease pathogenesis.

Adult↗

A reappraisal of the self-association of human spectrin.

The self-association behaviour of human spectrin has been re-examined through a study of sedimentation equilibrium, sedimentation velocity and gel electrophoresis. In all cases we find evidence for oligomers of spectrin larger than the tetramer, even at low concentration. The data are not consistent with a simple dimer-tetramer model, but instead indicate an open, or indefinite, pattern of association. Although a good fit to the data can be achieved with the isodesmic reaction model, with an equilibrium constant in agreement with the value previously determined for the dimer-tetramer reaction, there is other evidence suggesting that the actual association scheme may be somewhat more complex.

Electrophoresis, Polyacrylamide Gel↗

Differences in the electric birefringence of spectrin dimers and tetramers as shown by the fast reversing electric pulse method.

The electric birefringence of purified spectrin has been examined in medium of low ionic strength at 20 degrees C and for electric fields smaller than 4 X 10(4) V m(-1), using the reversing electric pulse method. This technique allows study of the permanent and induced dipole electric moment of macromolecules more easily than in measurements using only rectangular pulses. We show that spectrin heterodimers and heterotetramers have different electro-optical properties. The relaxation time of the tetramer (7 microseconds) is significantly longer than that of the dimer (4.5 microseconds). Tetramers and dimers have also different polarizability parameters.

Birefringence↗

Effects of dextran on the self-association of human spectrin.

The self-association of human spectrin is enhanced in the presence of dextran. The equilibrium constant for association of two heterodimers to form a tetramer is increased by an order of magnitude in the presence of 20% dextran. The rate constant for association is also enhanced, while the rate constant for dissociation is almost independent of dextran concentration. The degree of enhancement of association is dependent only on the mass concentration of dextran; for a given mass concentration of dextran the effect is independent of dextran molecular weight. These effects are believed to be due to excluded volume phenomena, and a model is presented that realistically accounts for the effects. These results imply that the association of spectrin within the erythrocyte will be enhanced by the presence of hemoglobin.

Dextrans↗

Alpha-fodrin (brain spectrin) immunocytochemical localization in rat vestibular hair cells.

The presence of a spectrin-related protein in rat vestibular sensory receptors was demonstrated by immunocytochemistry and immunoblotting using affinity purified anti alpha-fodrin antibodies. Intense immunoreactivity was found in the apical pole of sensory hair cells where it seems to be concentrated in the cuticular plate. In contrast, alpha-fodrin immunoreactivity was absent from the stereocilia. We suggest that a spectrin-related protein participates in the organization of the cuticular plate of vestibular hair cells by cross-linking actin filaments as well as by anchoring the cuticular plate to the apical cell membrane.

Animals↗

Increased spectrin proteolysis in the brindled mouse brain.

Proteolytically generated fragments of the microfilament anchoring protein brain spectrin were found to accumulate in brindled mouse brain. Proteolysis was most extensive in brain regions possessing high concentrations of N-methyl-D-aspartate (NMDA) receptors (e.g. cortex, striatum, hippocampus). The brindle mutation affects copper homeostasis and thus a variety of copper-dependent enzymes needed in intermediary metabolism. The altered mitochondria of these mice are suggested to less efficiently buffer NMDA receptor-gated calcium fluxes, thus promoting activation of calcium-activated proteases and subsequent degradation of the spectrin meshwork.

Aging↗

Spectrin breakdown products increase with age in telencephalon of mouse brain.

Calcium activated proteolysis of brain spectrin produces characteristic breakdown products (BDPs), the concentrations of which increase markedly in many instances of brain pathology. Results reported here indicate that levels of the BDPs rise with age (3-30 months) in the telencephalon but not in the hindbrain of Balb/c mice. These observations suggest that spectrin breakdown is a pathologic biochemical marker which increases with age in some but not all brain regions.

Aging↗

Disruption of phospholipid asymmetry in erythrocyte vesicles deficient in spectrin.

The transbilayer distribution of phospholipids in right-side-out and inside-out vesicles derived from human erythrocytes was studied by phospholipase A2 digestion assays and by staining with the fluorescent dye merocyanine 540. In both types of vesicles, the normal asymmetric distribution of phospholipids characteristic of intact cells was disrupted. Because both types of vesicles are deficient in spectrin, the major protein of the cytoskeletal network which normally underlies the membrane, these results support the contention that spectrin is involved in the maintenance of phospholipid asymmetry.

Erythrocyte Membrane↗

The detection of a spectrin-like protein in Trypanosoma cruzi with a polyclonal antibody.

A rabbit serum raised against sheep erythrocyte spectrin stained mainly the flagella of epimastigote forms of the parasitic protozoan Trypanosoma cruzi. In Western blots of T. cruzi proteins solubilized with Nonidet P-40 it recognized mainly a polypeptide doublet with an apparent molecular weight of about 240 kDa, while a pre-immune rabbit serum and a tubulin monoclonal antibody did not. The results are consistent with the idea that a spectrin-like protein may be involved in cytoskeleton-membrane interactions in flagella of T. cruzi.

Animals↗