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Natural genetic variation in Stim1 creates stroke in the spontaneously hypertensive rat

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Abstract Similar to humans, the risk of cerebrovascular disease in stroke-prone spontaneously hypertensive rats (SHR-A3/SHRSP) arises from naturally occurring genetic variation. In the present study, we show the involvement of genetic variation affecting the store-operated calcium signaling gene, Stim1 , in the pathogenesis of stroke in SHR. Stim1 is a key lymphocyte activation signaling molecule and contains functional variation in SHR-A3 that diverges from stroke-resistant SHR-B2. We created a SHR-A3 congenic line in which Stim1 was substituted with the corresponding genomic segment from SHR-B2. Compared with SHR-A3 rats, Stim1 congenic SHR-A3 (SHR-A3( Stim1 -B2)) have reduced cerebrovascular disease in response to salt loading including lower neurological deficit scores and cerebral edema. Microbleeds and major hemorrhages occurred in over half of SHR-A3 rats. These lesions were absent in SHR-A3( Stim1 -B2) rats. Loss of Stim1 function in mice and humans is associated with antibody-mediated autoimmunity due to defects in T lymphocyte helper function to B cells. We investigated autoantibody formation using a high-density protein array to detect the presence of IgG and IgM autoantibodies in SHR-A3. Autoantibodies to key cerebrovascular stress proteins were detected that were reduced in the congenic line.
Title: Natural genetic variation in Stim1 creates stroke in the spontaneously hypertensive rat
Description:
Abstract Similar to humans, the risk of cerebrovascular disease in stroke-prone spontaneously hypertensive rats (SHR-A3/SHRSP) arises from naturally occurring genetic variation.
In the present study, we show the involvement of genetic variation affecting the store-operated calcium signaling gene, Stim1 , in the pathogenesis of stroke in SHR.
Stim1 is a key lymphocyte activation signaling molecule and contains functional variation in SHR-A3 that diverges from stroke-resistant SHR-B2.
We created a SHR-A3 congenic line in which Stim1 was substituted with the corresponding genomic segment from SHR-B2.
Compared with SHR-A3 rats, Stim1 congenic SHR-A3 (SHR-A3( Stim1 -B2)) have reduced cerebrovascular disease in response to salt loading including lower neurological deficit scores and cerebral edema.
Microbleeds and major hemorrhages occurred in over half of SHR-A3 rats.
These lesions were absent in SHR-A3( Stim1 -B2) rats.
Loss of Stim1 function in mice and humans is associated with antibody-mediated autoimmunity due to defects in T lymphocyte helper function to B cells.
We investigated autoantibody formation using a high-density protein array to detect the presence of IgG and IgM autoantibodies in SHR-A3.
Autoantibodies to key cerebrovascular stress proteins were detected that were reduced in the congenic line.

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