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Biomedical subjects

S Kauffman

Publications and source records attributed to S Kauffman.

At least 19 recordsLinked to original sources

A proposal regarding the mechanism which underlies lineage choice during hematopoietic differentiation.

We present a simple Boolean Network model of a genetic regulatory network which can account for the differentiation of hemopoietic cells. In this model while decision choice is stochastic, the probability of differentiating along a specific pathway is determined by the gene expression state of the cell when the signal to differentiate appears. This probability can be altered by the acute and chronic needs of the individual. Mutations disrupt normal maturation. The paper also presents a larger Boolean Network model which can be used to study normal and leukemic stem cell attractor states.

Cell Differentiation

Criticality and scaling in evolutionary ecology.

Fluctuations in ecological systems are known to involve a wide range of spatial and temporal scales, often displaying self-similar (fractal) properties. Recent theoretical approaches are trying to shed light on the nature of these complex dynamics. The results suggest that complexity in ecology and evolution comes from the network-like structure of multispecies communities that are close to instability. If true, these ideas might change our understanding of how complexity emerges in the biosphere and how macroevolutionary events could be decoupled from microevolutionary ones.

Journal Article

Thinking combinatorially.

Biopolymers and chemical compounds with novel functions can be selected or screened from randomized libraries. Recently, it has become possible to augment the functions of biopolymers via the conjugation or incorporation of unnatural chemical moieties. In the future, it should prove possible to engineer systems that can self-evolve and thereby reveal unexpected emergent properties.

Biopolymers

Adaptive walks with noisy fitness measurements.

Adaptive walks constitute an optimization technique for searching a space of possible solutions, for example, a space of different molecules. The goal is to find a point in space (a molecule) that is optimal or near-optimal in some property, generally referred to as the 'fitness', such as its ability to bind to a given receptor. Adaptive walking, an analog of natural selection, is a powerful technique for searching landscapes. However, errors in the measurements will cause errors in the adaptive walks. Mutant molecules of higher fitness may be ignored or mutants of lower fitness may be accepted. To examine the effect of measurement error on adaptive walks, we simulate single-agent hill-climbing walks on NK landscapes of varying ruggedness where Gaussian noise is added to the fitness values to model measurement error. We consider both constant measurement noise and noise whose variance decays exponentially with fitness. We show that fitness-independent noise can cause walks to 'melt' off the peaks in a landscape, wandering in larger regions as the noise increases. However, we also show that a small amount of noise actually helps the walk perform better than with no noise. For walks in which noise decreases exponentially with fitness, the most characteristic behavior is that the walk meanders throughout the landscape until it stumbles across a point of relatively high fitness, then it climbs the landscape towards the nearest peak. Finally, we characterize the balance between selection pressure and noise and show that there are several classes of walk dynamic behavior.

Algorithms

Is morphogenesis an intrinsically robust process?

Because morphogenesis is dynamically complex, involving many processes operating over different spatial and temporal scales, it is generally assumed that the stability and repeatability of development depends primarily upon accurate control over parameter values i.e. a precise genetic program. However, it is possible that the dynamic coupling between the different mechanisms involved in development reduces the choices available to the system because of bias in successive symmetry-breaking events. Evidence for such stable cascades in morphogenetic processes is described, and a general argument is presented for morphogenesis as an intrinsically robust process. The evolutionary implications of the hypothesis are considerable.

Acetabularia

Towards a general theory of adaptive walks on rugged landscapes.

Adaptive evolution, to a large extent, is a complex combinatorial optimization process. In this article we take beginning steps towards developing a general theory of adaptive "walks" via fitter variants in such optimization processes. We introduce the basic idea of a space of entities, each a 1-mutant neighbor of many other entities in the space, and the idea of a fitness ascribed to each entity. Adaptive walks proceed from an initial entity, via fitter neighbors, to locally or globally optimal entities that are fitter than their neighbors. We develop a general theory for the number of local optima, lengths of adaptive walks, and the number of alternative local optima accessible from any given initial entity, for the baseline case of an uncorrelated fitness landscape. Most fitness landscapes are correlated, however. Therefore we develop parts of a universal theory of adaptation on correlated landscapes by adaptive processes that have sufficient numbers of mutations per individual to "jump beyond" the correlation lengths in the underlying landscape. In addition, we explore the statistical character of adaptive walks in two independent complex combinatorial optimization problems, that of evolving a specific cell type in model genetic networks, and that of finding good solutions to the traveling salesman problem. Surprisingly, both show similar statistical features, encouraging the hope that a general theory for adaptive walks on correlated and uncorrelated landscapes can be found. In the final section we explore two limits to the efficacy of selection. The first is new, and surprising: for a wide class of systems, as the complexity of the entities under selection increases, the local optima that are attainable fall progressively closer to the mean properties of the underlying space of entities. This may imply that complex biological systems, such as genetic regulatory systems, are "close" to the mean properties of the ensemble of genomic regulatory systems explored by evolution. The second limit shows that with increasing complexity and a fixed mutation rate, selection often becomes unable to pull an adapting population to those local optima to which connected adaptive walks via fitter variants exist. These beginning steps in theory development are applied to maturation of the immune response, and to the problem of radiation and stasis. Despite the limitations of the adaptive landscape metaphor, we believe that further development along the lines begun here will prove useful.

Adaptation, Biological

Polyclonal polymorphic B-cell lymphoproliferative disorder with prominent pulmonary involvement in children with acquired immune deficiency syndrome.

Four cases of pediatric Acquired Immune Deficiency Syndrome (AIDS) with lymphoproliferative disorder are described and other lymphoid lesions in previously reported cases of pediatric AIDS are reviewed. The lymphoproliferative disorder was characterized by polyclonal, polymorphic B-cell content without evidence of cellular atypia, necrosis or prominent mitotic activity but with predominantly extranodal systemic and prominent pulmonary involvement. Since the lesion has overlapping features it is considered to be intermediate between benign and malignant lymphoproliferations and designated as polyclonal, polymorphic B-cell lymphoproliferative disorder (PBLD) of pediatric AIDS. The PBLD is part of a spectrum of lymphoid lesions in pediatric AIDS consisting of follicular lymphoid hyperplasia of nodal and extranodal sites, pulmonary lymphoid hyperplasia/lymphoid interstitial pneumonitis complex (PLH/LIP complex) in cases previously reported by the authors, and also malignant lymphoma reported by others. It is possible that Epstein-Barr virus (EBV) by itself or in synergism with human T-lymphotropic virus-type III (HTLV-III) is related to pathogenesis of PBLD in children with AIDS.

Acquired Immunodeficiency Syndrome

Angiotensin II binding sites in individual segments of the rat nephron.

The sites of action of angiotensin II along the nephron are not well defined and both proximal and distal effects are suggested. Using a microassay that permits measurement of hormone binding in discrete tubule segments, we determined the binding sites of 125I-angiotensin II along the nephron of Sprague-Dawley rats. Specific binding in proximal convoluted tubule (PCT) (at 25 degrees C, pH 7.4) was linearly related to tubule length and saturable, with an apparent maximal binding capacity of approximately 300 amol X cm-1. Binding specificity was verified in competition experiments that revealed significant (P less than 0.001) and comparable competition for radioligand binding by angiotensin II and angiotensin precursor, metabolite, and analogues, whereas unrelated peptides of similar size (bradykinin, ACTH [1-10]) were without effect. The profile of specific angiotensin II binding along the nephron was: PCT, 216 +/- 13; pars recta, 86 +/- 14; medullary thick ascending limb of Henle's loop, 46 +/- 8; cortical thick ascending limb of Henle's loop, 77 +/- 8; distal convoluted tubule, 49 +/- 10; cortical collecting tubule, 15 +/- 1; medullary collecting tubule, 32 +/- 7 amol X cm-1. These results indicate the presence of specific angiotensin II binding sites in all tubule segments studied, but binding capacity was highest in the proximal convoluted tubule, in agreement with transport studies that localize the effects of the hormone in this segment.

Angiotensin II

Natural history of "high-risk" bundle-branch block: final report of a prospective study.

We conducted a prospective study in which 554 patients with chronic bifascicular and trifascicular conduction abnormalities were followed for an average of 42.4 +/- 8.5 months. Heart block occurred in 19 patients, and 17 were successfully treated. The actuarial five-year mortality from an event that could conceivably have been a bradyarrhythmia was 6 per cent (35 per cent from all causes). Of the 160 deaths 67 (42 per cent) were sudden; most of these were not ascribable to bradyarrhythmia but to tachyarrhythmia and myocardial infarction. Mortality was higher in patients with coronary-artery disease (P less than 0.01) and congestive heart failure (P less than 0.05). Patients in whom syncope developed before or after entry into the study had a 17 per cent incidence of heart block (2 per cent in those without syncope)(P less than 0.05); however, no single variable was predictive of which patients were at high risk of death from a bradyarrhythmia. The predictors of death were increasing age, congestive heart failure, and coronary-artery disease; the predictors of sudden death were coronary-artery disease and increasing age. The risks of heart block and of death from a bradyarrhythmia are low; in most patients, heart block can be recognized and successfully treated with a pacemaker.

Aged

A prospective study of sudden death in "high-risk" bundle-branch block.

We prospectively followed 257 patients with bifascicular and trifascicular conduction-system disease and intact atrioventricular conduction who had undergone His-bundle studies. Forty-seven per cent had associated coronary-artery disease, and 23 per cent primary conduction-system disease. His-ventricular interval was moderately prolonged in 43 per cent and markedly prolonged in 12 per cent. During an average follow-up period of 25 months 50 patients died. However, death was sudden in only 27, and 17 of the sudden deaths were not due to bradyarrhythias. Actuarial analysis showed an overall mortality rate (mean +/- S.E.) of 19 +/- 2.6 per cent at two years, mortality from sudden death being 10 +/- 2.6 per cent. Permanent heart block occurred in 12. No clinical symptoms (including syncope), electrocardiographic findings, electrophysiologic data or their combination identified patients at high risk of sudden death. Sudden death due to bradyarrhythmia is uncommon in patients with bundle-branch block and intact atrioventricular conduction. Therefore, routine prophylactic use of permanent pacemakers in all such patients is inappropriate. Pacemaker implantation should be reserved for those with documented symptomatic bradyarrhythmias.

Adult

Survival in patients with intraventricular conduction defects.

All 42,000 electrocardiograms taken at the University of Oregon Health Sciences Center from 1969 through 1971 were reviewed; 325 patients (0.77%) had left bundle-branch block (LBBB) or right bundle-branch block (RBBB) with axis deviation (AD). In December 1974, 90% were contacted or found to be dead. The five-year survival rate (actuarial technique) (mean +/- SE) was 45.5 +/- 2.9%. It was significantly worse than that of age- and sex-matched "controls." In most patients the cause of death could not be determined. Survival of 164 LBBB patients (40.7 +/- 4.1%) at five years was not significantly worse than that of 161 RBBB and AD patients (49.5 +/- 4.2%). Those with syncope did no worse in terms of survival than did those without. The five-year survival in coronary artery disease patients was 33.7 +/- 4.4%, in those with primary conduction system disease (20% of patients), it was 50.6 +/- 6.6%. It will be necessary to know the causes of death and of syncope in conduction disease patients before it can be determined whether or not pacemakers can prevent either.

Adult

Control circuits for determination and transdetermination: interpreting positional information in a binary epigenetic code.

Positional information in an embryo requires interpretation to guide spatially ordered differentiation. Evidence, from dtermination and transdetermination among imaginal disc derivatives in Drosophila, suggests the interpretative commitment, or determination, is carried by entities possissing only two alternate states each. This hypothesis correctly predicts pairs of classes of mutants affecting complementary subsets of imaginal discs. Four such complementary pairs define four boundaries separating the various imaginal discs on the fate map of the egg. Crossing any boundary corresponds to a change in state of the associated determination circuit. Using these boundaries, the model makes 43 predictions about relative transdetermination frequencies. Thirty-four appear correct. This has an a priori probability of less than 10- minus 4. False predictions appear to reflect incompleteness in the theory. The four boundaries on the fate map presumably correspond to threshold levels of spatial gradients constituting positional information; on one side of a threshold one circuit state occurs, on the other, the second state. The last four cleavage divisions in Drosophila melanogaster occur as four mitotic waves with geometries similar to the four boundaries. Disc determination happens at about this time. These waves may be, or reflect, the signalling system carrying positional information. Focus on the interpretive machinery, the determination circuits, suggests two slightly new concepts: (1 the set of possible combinations of states of determination circuits constitutes an epigenetic code, thus raising familiar coding questions concerning redundancy or nonsense words; (2) each circuit may respond to its own gradient or positional signal distributed in two or three dimensions.

Animals