TY - JOUR
T1 - Effect of Solvents on Proline Modified at the Secondary Sphere
T2 - A Multivariate Exploration
AU - Lustosa, Danilo M.
AU - Barkai, Shahar
AU - Domb, Ido
AU - Milo, Anat
N1 - Funding Information: This research was supported by the Israel Science Foundation (Grants No. 2252/21). Funding Information: D.M.L. gratefully acknowledges the Kreitman School of Advanced Graduate Studies for a postdoctoral research fellowship. S.B. and I.D. gratefully acknowledge the Kreitman School of Advanced Graduate Studies for Chemo-tech PhD fellowships. Publisher Copyright: ©
PY - 2022/2/4
Y1 - 2022/2/4
N2 - The critical influence of solvent effects on proline-catalyzed aldol reactions has been extensively described. Herein, we apply multivariate regression strategies to probe the influence of different solvents on an aldol reaction catalyzed by proline modified at its secondary sphere with boronic acids. In this system, both in situ binding of the boronic acid to proline and the outcome of the aldol reaction are impacted by the solvent-controlled microenvironment. Thus, with the aim of uncovering mechanistic insight and an ancillary aim of identifying methodological improvements, we designed a set of experiments, spanning 15 boronic acids in five different solvents. Based on hypothesized intermediates or interactions that could be responsible for the selectivity in these reactions, we proposed several structural configurations for the library of boronic acids. Subsequently, we compared the statistical models correlating the outcome of the reaction in different solvents with molecular descriptors produced for each of these proposed configurations. The models allude to the importance of different interactions in controlling selectivity in each of the studied solvents. As a proof-of-concept for the practicality of our approach, the models in chloroform ultimately led to lowering the ketone loading to only two equivalents while retaining excellent yield and enantio-and diastereo-selectivity.
AB - The critical influence of solvent effects on proline-catalyzed aldol reactions has been extensively described. Herein, we apply multivariate regression strategies to probe the influence of different solvents on an aldol reaction catalyzed by proline modified at its secondary sphere with boronic acids. In this system, both in situ binding of the boronic acid to proline and the outcome of the aldol reaction are impacted by the solvent-controlled microenvironment. Thus, with the aim of uncovering mechanistic insight and an ancillary aim of identifying methodological improvements, we designed a set of experiments, spanning 15 boronic acids in five different solvents. Based on hypothesized intermediates or interactions that could be responsible for the selectivity in these reactions, we proposed several structural configurations for the library of boronic acids. Subsequently, we compared the statistical models correlating the outcome of the reaction in different solvents with molecular descriptors produced for each of these proposed configurations. The models allude to the importance of different interactions in controlling selectivity in each of the studied solvents. As a proof-of-concept for the practicality of our approach, the models in chloroform ultimately led to lowering the ketone loading to only two equivalents while retaining excellent yield and enantio-and diastereo-selectivity.
UR - http://www.scopus.com/inward/record.url?scp=85123924610&partnerID=8YFLogxK
U2 - 10.1021/acs.joc.1c02778
DO - 10.1021/acs.joc.1c02778
M3 - Article
C2 - 35019660
SN - 0022-3263
VL - 87
SP - 1850
EP - 1857
JO - Journal of Organic Chemistry
JF - Journal of Organic Chemistry
IS - 3
ER -