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Biomedical subjects

T L Chiu

Publications and source records attributed to T L Chiu.

5 recordsLinked to original sources

Optimizing energy potentials for success in protein tertiary structure prediction.

BACKGROUND: Success in solving the protein structure prediction problem relies on the choice of an accurate potential energy function. for a single protein sequence, it has been shown that the potential energy function can be optimized for predictive success by maximizing the energy gap between the correct structure and the ensemble of random structures relative to the distribution of the energies of these random structures (the Z-score). Different methods have been described for implementing this procedure for an ensemble of database proteins. Here, we demonstrate a new approach. RESULTS: For a single protein sequence, the probability of success (i.e the probability that the folded state is the lowest energy state) is derived. We then maximize the average probability of success for a set of proteins to obtain the optimal potential energy function. This results in maximum attention being focused on the proteins whose structures are difficult but not impossible to predict. CONCLUSIONS: Using a lattice model of proteins, we show that the optimal interaction potentials obtained by our method are both more accurate and more likely to produce successful predictions than those obtained by other averaging procedures.

Computer Simulation

Optimizing potentials for the inverse protein folding problem.

Inverse protein folding, which seeks to identify sequences that fold into a given structure, has been approached by threading candidate sequences onto the structure and scoring them with database-derived potentials. The sequences with the lowest energies are predicted to fold into that structure. It has been argued that the limited success of this type of approach is not due to the discrepancy between the scoring potential and the true potential but is rather due to the fact that sequences choose their lowest-energy structure rather than structures choosing the lowest-energy sequences. Here we develop a non-physical potential scheme optimized for the inverse folding problem. We maximize the average probability of success for a set of lattice proteins to obtain the optimal potential energy function, and show that the potential obtained by our method is more likely to produce successful predictions than the true potential.

Protein Folding

The unique challenges faced by psychiatrists and other mental health professionals working in a multicultural setting.

This article describes and analyzes the unique challenges that face psychiatrists and other mental health professionals serving a multicultural population in a limited geographic setting, based on the author's experiences working as a psychiatrist on a mobile crisis unit from 1984 through 1991 on the Lower East Side of Manhattan. Of special importance, the paper presents and provides support for the "interaction hypothesis", which proposes that sociocultural background factors interact with mental disorders to produce dissimilar behavioral expressions of the same disorder among members of different ethnic groups. Concern is voiced that mental health professions, in order to provide effective treatment in multicultural settings, need to understand and accept each ethnic group's idiosyncracies, identity, and background.

Adult

A psychiatric mobile crisis unit in New York City: description and assessment, with implications for mental health care in the 1990s.

This article presents a review and assessment of a community Mobile Crisis Intervention Team working on the Lower East Side of Manhattan. Of special importance, a trend is noted involving a changing philosophy and modus operandi. Some reasons are offered to explain the trend and questions are raised about the future of the delivery of mental health services in large urban areas.

Adult