TY - JOUR
T1 - States of aggregation of the dahlemense strain of tobacco mosaic virus protein and their relation to crystal formation
AU - Sperling, R.
AU - Klug, A.
PY - 1975/8/15
Y1 - 1975/8/15
N2 - The aggregation of the protein of the dahlemense strain of tobacco mosaic virus has been studied by electron microscopy and ultracentrifugation. The aggregates formed are similar to those formed by the vulgare strain, although the particular conditions for their formation are often rather different. Helix formation by dialysis of A protein at pH 8 to acid pH is much more efficient if an intermediate step at pH 7 is introduced. The 20 S particle or two-layer disk is stable over a wide range of pH and ionic strength values. There is no tendency to form short stacks of disks at high ionic strength; instead, 30 S particles are formed that correspond to a pair of interlocked disks giving a "figure-of-eight" appearance in electron micrographs. These particles appear to be the "building blocks" of the protein crystal.
AB - The aggregation of the protein of the dahlemense strain of tobacco mosaic virus has been studied by electron microscopy and ultracentrifugation. The aggregates formed are similar to those formed by the vulgare strain, although the particular conditions for their formation are often rather different. Helix formation by dialysis of A protein at pH 8 to acid pH is much more efficient if an intermediate step at pH 7 is introduced. The 20 S particle or two-layer disk is stable over a wide range of pH and ionic strength values. There is no tendency to form short stacks of disks at high ionic strength; instead, 30 S particles are formed that correspond to a pair of interlocked disks giving a "figure-of-eight" appearance in electron micrographs. These particles appear to be the "building blocks" of the protein crystal.
UR - http://www.scopus.com/inward/record.url?scp=0016853289&partnerID=8YFLogxK
U2 - 10.1016/0022-2836(75)90169-2
DO - 10.1016/0022-2836(75)90169-2
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C2 - 240945
AN - SCOPUS:0016853289
SN - 0022-2836
VL - 96
SP - 425-428,IN11-IN12,429-430
JO - Journal of Molecular Biology
JF - Journal of Molecular Biology
IS - 3
ER -