Dear Colleagues

A reminder that the Cold Spring Harbor Macromolecular Crystallography course 
will take place October 11-27th this year (pleased see below for more details). 
This comprehensive course is an outstanding place to learn both the theoretical 
and practical aspects of macromolecular crystallography. There are extensive 
lectures and practical sessions from world recognized experts in 
crystallization, data collection, data processing, structure solution, 
refinement, and validation. The goal of the course is for researchers who have 
had some exposure to structural biology to become experts in crystallography. 
This is an experience in macromolecular crystallography learning that cannot be 
found anywhere else, and the student/teacher ratio is often 1:1.

Please follow the link below to the course web site. In particular, please note 
the information about the various fellowships, scholarships, and stipends that 
are available. Many applicants ultimately receive some form of financial 
support. 

If anyone has any questions please send me an e-mail, and we will be happy to 
answer all queries.

Paul Adams, Dorothee Liebschner, Janet Newman, James Pflugrath, Tom Peat



 
<https://6zadfgnab.cc.rs6.net/tn.jsp?f=001vX26f7F6RuZoXG6GBghaPG6Gmt5I2bQPqwmSzzY8Nv6fpwotETJRFVzfRlv-Ric5jdBYw6pJ_x2M-2o_EujiArEELpm2-Ric1rbiB7YDN12N7UGNpxSyAPTlZVosyiwJ7tA5tKAd9HD5aaocz1dpcZeYWizvotPC&c=3TmapiwCc145JAQCOHm899-1vDcKsSTtKsTFjnVr-yDxWKzrcuAZSA==&ch=Pme851w1_FlobvCfTQguUvp-wdf7HADJ0tN6uMPteDJCSdQTWkWyGQ==>
 
<https://6zadfgnab.cc.rs6.net/tn.jsp?f=001vX26f7F6RuZoXG6GBghaPG6Gmt5I2bQPqwmSzzY8Nv6fpwotETJRFYtrHSl8m2qvnQJSfV5JJsnZNbzEW-nFOQlVpnqZUIjer0CHtvEXlK0vpf8wZRjn_cUvkJx_USzTyGolETB2OVU7gGw-aGqL-KUA-AarHw0m5SX57YrWPIFJqlNrFdk202T7CKH40lGSVk5nQ4UNmY8=&c=3TmapiwCc145JAQCOHm899-1vDcKsSTtKsTFjnVr-yDxWKzrcuAZSA==&ch=Pme851w1_FlobvCfTQguUvp-wdf7HADJ0tN6uMPteDJCSdQTWkWyGQ==>

Macromolecular Crystallography 
<https://6zadfgnab.cc.rs6.net/tn.jsp?f=001vX26f7F6RuZoXG6GBghaPG6Gmt5I2bQPqwmSzzY8Nv6fpwotETJRFYtrHSl8m2qvnQJSfV5JJsnZNbzEW-nFOQlVpnqZUIjer0CHtvEXlK0vpf8wZRjn_cUvkJx_USzTyGolETB2OVU7gGw-aGqL-KUA-AarHw0m5SX57YrWPIFJqlNrFdk202SKF56a6dxr9ExJ-bcQe-s=&c=3TmapiwCc145JAQCOHm899-1vDcKsSTtKsTFjnVr-yDxWKzrcuAZSA==&ch=Pme851w1_FlobvCfTQguUvp-wdf7HADJ0tN6uMPteDJCSdQTWkWyGQ==>
October 11 - 27, 2026
Applications Due: July 17

Instructors
Paul Adams, Lawrence Berkeley National Laboratory
Dorothee Liebschner, Lawrence Berkeley National Laboratory
Janet Newman, UNSW, Australia
James Pflugrath, Rigaku Americas Corporation (ret.), Texas
Co-Instructor
Tom Peat, UNSW, Australia
X-ray crystallography has been the cornerstone of structural biology for half a 
century and remains the technique of choice for atomic resolution understanding 
of macromolecules and for structure guided drug discovery. 

This course combines laboratory and computational instruction to train course 
participants in the major techniques used to determine three-dimensional 
structures. It is designed for scientists with a working knowledge of protein 
structure and function, but who are new to macromolecular crystallography or 
who wish to increase their in-depth knowledge of macromolecular 
crystallography. The advent of methods for the accurate prediction of protein 
structures is accelerating crystallography experiments, and the course will 
train researchers in how to best use these models.
Topics
Basic Diffraction Theory
Structure Presentation
Coordinate Deposition
Structure Validation
Model Building and Refinement
Electron Density Maps Improvement
Using Predicted Models in Structure Solution and Completion
Protein Structure Prediction
Structure Solution by Experimental Phasing Methods (SAD, MAD, MIR, and others) 
and Molecular Replacement
Data Collection and Processing
Synchrotron X-ray Sources and Optics
Crystallization (Proteins, Nucleic Acids, Complexes and Membrane Proteins)
Participants have extensive hands-on training in well-equipped labs in how to 
crystallize proteins and determine crystal structures by several methods, while 
learning through lectures on theory and methods. Both basic and advanced 
subjects are covered during lectures, which are given by leaders in the field. 
Informal discussions behind the techniques are frequent and students are 
expected to pose questions to be answered in interactive sessions.
For further information and to apply please visit the Macromolecular 
Crystallography course website. 
<https://6zadfgnab.cc.rs6.net/tn.jsp?f=001vX26f7F6RuZoXG6GBghaPG6Gmt5I2bQPqwmSzzY8Nv6fpwotETJRFYtrHSl8m2qvnQJSfV5JJsnZNbzEW-nFOQlVpnqZUIjer0CHtvEXlK0vpf8wZRjn_cUvkJx_USzTyGolETB2OVU7gGw-aGqL-KUA-AarHw0m5SX57YrWPIFJqlNrFdk20zfTIy2Xy7e6lttC49yapj8=&c=3TmapiwCc145JAQCOHm899-1vDcKsSTtKsTFjnVr-yDxWKzrcuAZSA==&ch=Pme851w1_FlobvCfTQguUvp-wdf7HADJ0tN6uMPteDJCSdQTWkWyGQ==>

Cold Spring Harbor Laboratory - Meetings & Courses | 1 Bungtown Road | Cold 
Spring Harbor, NY 11724 US
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--
Paul Adams (he/him/his)
Associate Laboratory Director for Biosciences, LBL 
(https://biosciences.lbl.gov) 
Principal Investigator, Computational Crystallography Initiative, LBL 
(http://cci.lbl.gov) 
Vice President for Technology, the Joint BioEnergy Institute 
(http://www.jbei.org) 
Principal Investigator, ALS-ENABLE, Advanced Light Source 
(http://als-enable.lbl.gov) 
Adjunct Professor, Department of Bioengineering, UC Berkeley 
(http://bioeng.berkeley.edu) 
Member of the Graduate Group in Comparative Biochemistry, UC Berkeley 
(http://compbiochem.berkeley.edu) 

Building 91, Room 410
Building 978, Room 4126
Tel: 1-510-486-4225
http://cci.lbl.gov/paul 
ORCID: 0000-0001-9333-8219

Lawrence Berkeley Laboratory
1 Cyclotron Road
BLDG 91R0183
Berkeley, CA 94720, USA.

Executive Assistant: Michael Espinosa [ [email protected] ][ 1-510-333-6788 ]
Phenix Consortium: Ashley Dawn [ [email protected] ][ 1-510-486-5455 ]
--


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