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Protein-protein interfaces: architectures and interactions in protein-protein interfaces and in protein cores. Their similarities and differences.

Protein structures generally consist of favorable folding motifs formed by specific arrangements of secondary structure elements. Similar architectures can be adopted by different amino acids sequences, although the details of the structures vary. It has long been known that despite the sequence variability, there is a striking preferential conservation of the hydrophobic character of the amino acids at the buried positions of these folding motifs. Differences in the sizes of the side-chains are accommodated by movements of the secondary structure elements with respect to each other, leading to compact packing. Scanning protein-protein interfaces reveals that similar architectures are also observed at and around their interacting surfaces, with preservation of the hydrophobic character, although not to the same extent. The general forces that determine the origin of the native structures of proteins have been investigated intensively. The major non-bonded forces operating on a protein chain as it folds into a three-dimensional structure are likely to be packing, the hydrophobic effect, and electrostatic interactions. While the substantial hydrophobic forces lead to a compact conformation, they are also nonspecific and cannot serve as a guide to a conformationally unique structure. For the general folding problem, it thus appears that packing is a prime candidate for determining a particular fold. Specific hydrogen-bonding patterns and salt-bridges have also been proposed to play a role. Inspection of protein-protein interfaces reveals that the hallmarks governing single chain protein structures also determine their interactions, suggesting that similar principles underlie protein folding and protein-protein associations. This review focuses on some aspects of protein-protein interfaces, particularly on the architectures and their interactions. These are compared with those present in protein monomers. This task is facilitated by the recently compiled, non-redundant structural dataset of protein-protein interfaces derived from the crystallographic database. In particular, although current view holds that protein-protein interfaces and interactions are similar to those found in the conformations of single-chain proteins, this review brings forth the differences as well. Not only is it logical that such differences would exist, it is these differences that further illuminate protein folding on the one hand and protein-protein recognition on the other. These are also particularly important in considering inhibitor (ligand) design.

Amino Acids↗

Geometric resistance and microvascular network architecture of human colorectal carcinoma.

OBJECTIVE: To measure the geometric resistance to blood flow in human colorectal carcinoma. Although tumor blood flow is of central importance in both the detection and the treatment of cancer, the determinants of blood flow through the neoplastic circulation are poorly understood. METHODS: Human colorectal carcinomas (tissue weight = 272 g +/- 43 g (SD), n = 6) were perfused ex vivo with a buffered physiological salt solution of known viscosity at flow rates ranging from 2.5 to 40 ml/min and perfusion pressures from 8 to 100 mm Hg. The geometric resistance was determined from the slope of the pressure-flow curve. For examination of the principal determinant of geometric resistance, the vascular architecture, one of the tumors was perfused with Batson's No. 17 polymer and macerated in KOH to produce a positive vascular east that was used for measurement of vascular branching patterns and dimensions. RESULTS: The pressure-flow relationship was linear at perfusion pressures above 40 mm Hg, and the geometric resistance, zzero, was constant at approximately 6.5 x 10(9) g/cm3. Below 40 mm Hg, zzero increased rapidly. The architecture of the arteriolar and capillary networks of human colorectal carcinoma is similar to those of experimental rodent tumors. Capillaries in planar and nonplanar meshworks had mean segment diameters of 11 +/- 2 and 9.6 +/- 2 microns, lengths of 46 +/- 24 and 107 +/- 40 microns, and intercapillary distances of 46 +/- 13 and 74 +/- 24 microns, respectively. CONCLUSIONS: The geometric flow resistance in neoplastic tissue is 1-2 orders of magnitude higher than that observed in normal tissues. A decrease in functional vascular cross-sectional area may explain the additional increase in resistance at small perfusion pressures. The observed flow resistance may be due to the specialized arteriolar and capillary network architecture, pressure exerted by proliferating cancer cells, and/or coupling between vascular and extravascular flow. These observations demonstrate that tumor vascularity alone may not be indicative of flow resistance or tumor susceptibility to blood-borne therapeutic agents.

Adenocarcinoma↗

Trabecular architecture of the knee joint.

The trabecular architecture of the human knee joint was studied three dimensionally by microradiography. The trabecular arrangement of the two condylar wheels of the femur was divided into five types. The trabeculae are so arranged that both condyles are able to adjust to mechanical compression and rotary movement. In the tibia, each trabecular arrangement has a different mechanical function. The epiphyseal line can be considered a laminated structure interposed between the compressive forces acting from the articular surface and the forces supporting the architecture of the metaphysis. The mechanics and kinematics of the traecular architecture are discussed.

Adult↗

The importance of genome architecture in cancer susceptibility: location, location, location.

Tumorigenesis requires the interaction between different gene disruptions to convert a normal cell into a cancer cell. These gene disruptions can involve loss of expression or misexpression of genes through genetic or epigenetic mutations. It is becoming clear that these disruptions are not isolated events in the genome, but are affected by genome architecture and the syntenic relationship of alleles on chromosomes. A better understanding of the genetic and epigenetic changes in cancer is important for the rational design of new therapies. We have recently shown that background-specific polymorphisms and loci under epigenetic regulation have a strong effect on cancer susceptibility in a mouse model of astrocytoma. Although these mice carry mutations in p53 and ras signaling pathways (through mutation of the rasGAP protein, Nf1), the susceptibility to different tumor types depends strongly on epigenetic regulation and does not show simple Mendelian inheritance. Our results demonstrate the importance of genome architecture and how tumorigenesis can be accelerated by concomitant loss or gain of multiple genes in a single chromosome rearrangement. Because genome architecture is very different between mice and humans, comparing patterns of genomic rearrangement in human cancer and mouse models may help distinguish causal genomic changes from correlative changes.

Animals↗

[The muscular architecture at the ureteropelvic junction in congenital hydronephrosis--a stereo-morphometric study].

Ureteropelvic junctions surgically taken from twelve patients with congenital hydronephrosis were submitted to stereo-morphometric studies on the architectural changes of smooth muscle layer. The specimens were opened longitudinally along the ureteral axis, flatly extended on a board, fixed in formalin and embedded in celloidin-paraffin. Serial histological sections in parallel with the wall were prepared; the 3D muscular architecture, visualized in some cases by computer-aided reconstruction, was simplified into vectors of bundles so that their arrangement might be expressed by a vector distribution. Deviation from the norm of architecture at the ureteropelvic junction was disclosed: Reduced muscles with increased connective tissues in four cases and disarrangement of bundles in eight cases, including two with predominantly longitudinal element, three with circular element and another three with irregular orientation. These abnormalities, probably reflecting abnormal maturation of muscles, appear to be related with the urinary obstruction in patients with congenital hydronephrosis.

Humans↗

Fractal analysis of bone architecture at distal radius.

Bone strength depends on bone quality (architecture, turnover, damage accumulation, and mineralization) as well as bone mass. In this study, human bone architecture was analyzed using fractal image analysis, and the clinical relevance of this method was evaluated. The subjects were 12 healthy female controls and 16 female patients suspected of having osteoporosis (age range, 22-70 years; mean age, 49.1 years). High-resolution CT images of the distal radius were acquired and analyzed using a peripheral quantitative computed tomography (pQCT) system. On the same day, bone mineral densities of the lumbar spine (L-BMD), proximal femur (F-BMD), and distal radius (R-BMD) were measured by dual-energy X-ray absorptiometry (DXA). We examined the correlation between the fractal dimension and six bone mass indices. Subjects diagnosed with osteopenia or osteoporosis were divided into two groups (with and without vertebral fracture), and we compared measured values between these two groups. The fractal dimension correlated most closely with L-BMD (r=0.744). The coefficient of correlation between the fractal dimension and L-BMD was very similar to the coefficient of correlation between L-BMD and F-BMD (r=0.783) and the coefficient of correlation between L-BMD and R-BMD (r=0.742). The fractal dimension was the only measured value that differed significantly between both the osteopenic and the osteoporotic subjects with and without vertebral fracture. The present results suggest that the fractal dimension of the distal radius can be reliably used as a bone strength index that reflects bone architecture as well as bone mass.

Absorptiometry, Photon↗

A review of magnetic resonance (MR) imaging of trabecular bone micro-architecture: contribution to the prediction of biomechanical properties and fracture prevalence.

Bone mineral density and three-dimensional trabecular structure play a significant role in predicting bone strength and biomechanical properties. MR is a non-invasive technique for determining trabecular architecture both in vivo and in vitro. In this paper we review the use of magnetic resonance imaging to obtain high resolution images of trabecular bone structure and quantify the three-dimensional architecture of the trabecular bone network. Studies assessing the anisotropy of the trabecular architecture in human cadaveric specimens from the distal and proximal femur, and the thoracic and lumbar vertebrae, are reviewed. The contributions of the MR derived measures of 3D trabecular bone structure to the biomechanical strength of the specimen are presented. In vivo, the relationship between the high resolution MR derived trabecular bone structure parameters in the distal radius and calcaneus in patients with hip fractures, are compared to age matched normal controls. MR derived measures are compared to measures of trabecular bone mineral density (BMD) in the hip using dual X-ray absorptiometry (DXA).

Adult↗

Healthcare information systems architecture.

The integration and evolution of existing systems represents one of the most urgent priorities of healthcare information systems in order to allow the whole organisation to meet the increasing clinical organisational and managerial needs. This paper discusses how an open architecture, based on the introduction of a middleware of common healthcare-specific services not only reduces the effort necessary for allowing existing systems to interwork, but also automatically establishes a functional and information basis common to the whole organisation, on top of which also new applications can be rapidly developed, natively integrated with the rest of the system. Such architecture has been already formalised through the proposed European preStandard, defined by the CEN/TC251/PT1-013 "Standard Architecture for Healthcare Information Systems" [1]. Through the utilisation of the DHE middleware, the effectiveness and validity of this approach is also being demonstrated in practice by several hospitals and healthcare industries from 13 European countries, which collaborate in the Hansa project, presently running under the Telematics Application Programme of the Commission of the European Communities.

Computer Communication Networks↗

[Architecture of collagen fibers in the meniscus of the human knee joint, with special reference to the medial meniscus and its connection to the articular ligaments].

1. To understand the meniscus-tears the architecture of their collagenic fibers is of interest, particularly so the connection of the fibers of the medial meniscus with the collateral ligament. 2. The ligaments of 12 knee joints have been studied macroscopically and with the aid of thick serial sections under polarized light. 3. The main portion of the tibial collateral ligament passes the articular space without any connection with the capsule or the meniscus. The upper oblique portion of the ligament runs inside the external zone of the meniscus to the posterior attachment of the latter. Immediately inferior to the articular space the oblique fibers have another attachment. 4. The findings in respect of the arrangement of the fibers in the menisci differ from those in earlier studies. Only in the external zone the fibers run approximately parallel to the outer border. After leaving the external zone the fibers run in an arched way through the middle zone. In the internal zone these fibers have nearly a radial direction. 5. The architecture of the menisci is discussed under functional aspects. It does not correspond to a "spring" but to a tendon, which is extended over a hypomochlion. 6. Forms and localisations of meniscus-tears have been discussed under viewpoint of architecture and compared with clinical results: The typical tear of the posterior segment of the medial meniscus is the horizontal cleavage. The present opinion according to which longitudinal tears are the typical meniscus lesion, seems to be doubtful.

Cartilage, Articular↗

Pre-synaptic lateral inhibition provides a better architecture for self-organizing neural networks.

Unsupervised learning is an important ability of the brain and of many artificial neural networks. A large variety of unsupervised learning algorithms have been proposed. This paper takes a different approach in considering the architecture of the neural network rather than the learning algorithm. It is shown that a self-organizing neural network architecture using pre-synaptic lateral inhibition enables a single learning algorithm to find distributed, local, and topological representations as appropriate to the structure of the input data received. It is argued that such an architecture not only has computational advantages but is a better model of cortical self-organization.

Algorithms↗

Constructing scenarios for validating the electronic health care record architecture.

The CEN TC 251 Electronic Health Care Record Architecture is the first part of a four part communication prestandard intended to facilitate the safe communication of clinical information, irrespective of circumstances related to time, distance, and responsibility. The work has important implications for a diversity of stakeholders and must embody clinical principles if it is to succeed. The issue at hand is how to enable clinicians to validate the reference architecture, which is necessarily a technical document, so that they have confidence that it can meet the clinical requirement for safe communication. A model of communication that has been used to ground the architecture is shown to be useful in creating relevant clinical scenarios to permit the first steps towards coherent validation in a systematic way.

Computer Communication Networks↗

The holistic architectural approach to integrating the healthcare record in the overall information system.

The integration and evolution of existing systems represents one of the most urgent problems facing those responsible for healthcare information systems so that the needs of the whole organisation are addressed. The management of the healthcare record represents one of the major requirements in the overall process, however it is also necessary to ensure that the healthcare record and other healthcare information is integrated within the context of an overall healthcare information system. The CEN ENV 12967-1 'Healthcare Information Systems Architecture' standard defines a holistic architectural approach where the various, organisational, clinical, administrative and managerial requirements co-exist and cooperate, relying on a common heritage of information and services. This paper reviews the middleware-based approach adopted by CEN ENV 12967-1 and the specialisation necessary for the healthcare record based on CEN ENV 12265 'Electronic Healthcare Record Architecture'.

Computer Systems↗

Architecture models to facilitate communication of clinical information.

This is an account of the development and use of a context model for facilitating the communication of clinical information. Its function is to articulate the principle of context within a reference architecture for the Electronic Health Care Record (EHCR). The work required a re-examination of established models of communication, the purpose being to use them to support an architecture that could be reasonably expected to accommodate future, and by definition unforeseeable, developments in EHCR communication. The Context Model is built upon seven recognized constituents of communication. These constituents, although having their origin in the engineering of signal communication, have been found to be useful for explication both in the verbal and textual communication of narratives between people. The electronic health care record architecture supported by the model is the European prestandard ENV13606-1.

Medical Records Systems, Computerized↗

A real-time CORBA based system architecture for robot assisted craniofacial surgery.

We present the concept of a system architecture for the computer aided craniofacial surgery. The architecture is based on CORBA, an industrial standard specification for the development of distributed applications. Our concept includes a fundamental behaviour oriented communication model and some fundamental software safety considerations. We've developed a standard library for the integration of new services and devices into our system architecture. It decreases development time noticeably. We tested the performance and usability of our concept on an evaluation set up consisting of a surgery robot system, an infrared navigation system, a force-torque sensor and a visualisation software, obtaining excellent results. Future work will consist in the integration of further devices and the extension of our safety concept. An accurate clinical evaluation will take place continuously.

Computer Graphics↗

Microvascular architecture of anthropoid primate intestine.

Microvascular architecture of the small intestine of New World monkey, ape, and man was examined with the silicone rubber injection technique and the results compared to previous observations in dogs and Old World monkeys. In man, chimpanzee, and New World monkey the small intestine villus contains a single centrally located vein draining a subepithelial capillary plexus converging at the apex of the villus. These villi also contain a single eccentrically located artery rising to the midlevel of the villus, where it branches into subepithelial capillaries over the rest of its length. This vascular architecture most closely resembles that observed in the gut of Old World monkeys in which the villus artery is absent altogether. This observation contrasts the microvascular architecture of canine intestinal villi in which marginal arteries surround a centrally located vein. These patterns of microvascular anatomy are analyzed in terms of the role of the gut in the pathogenesis of experimental shock. The differences observed may account for the known species variations in canine and primate experimental shock.

Adult↗

Distributed information system architecture for Primary Health Care.

We present a distributed architectural framework for Primary Health Care (PHC) Centres. Distribution is handled through the introduction of the Roaming Electronic Health Care Record (R-EHCR) and the use of local caching and incremental update of a global index. The proposed architecture is designed to accommodate a specific PHC workflow model. Finally, we discuss a pilot implementation in progress, which is based on CORBA and web-based user interfaces. However, the conceptual architecture is generic and open to other middleware approaches like the DHE or HL7.

Computer Communication Networks↗

The role of architectural transcription factors in cytokine gene transcription.

The strict control of cytokine gene transcription is required for the correct regulation of an immune response. Cytokine gene transcription is generally inducible and can also be cell-type specific. Promoter and enhancer regions that control the expression of these genes assemble complex arrays of transcription factors known as enhanceosomes. One important aspect of the organization of these multi-protein complexes is the presence of proteins known as architectural transcription factors. Architectural proteins influence structural aspects of enhanceosomes through protein:DNA as well as protein:protein interactions. The high mobility group I(Y) and the cold shock domain families of architectural proteins have been shown to play roles in cytokine gene transcription and will be discussed here. These families of proteins interact with specific structural features of DNA, modulate transcription factor binding to DNA, and interact directly with other transcription factors. The mechanisms by which they affect inducible cytokine gene transcription will be discussed.

Animals↗

[A program package of collection and mathematical processing of ECG data on the basis of COM architecture].

The paper deals with general questions of the Component Object Model (COM) architecture for ECG software applications. Here their common structure is presented, the benefits and constraints of component-based applications are considered. Being a component model, COM allows one to build any application the functionally complete modules. Each module is developed by the particular protocol that gives developers a possibility to provide effective interoperability between such components. The separate part of the article is devoted to reliability and performance issues of the component-based ECG applications. The approach described in this article permits one to solve a number of problems facing medical software developers by using the effective and flexible component architecture. As implementation of the discussed architecture, a software ECG system being developed by a team of authors is presented.

Computer Systems↗