Rotman Research Institute at Baycrest Hospital, Toronto, Ontario M6A 2E1 Canada.
J Neurosci. 2013 Aug 7;33(32):13088-93. doi: 10.1523/JNEUROSCI.1406-13.2013.
The KIBRA gene has been associated with episodic memory in several recent reports; carriers of the T-allele show enhanced episodic memory performance relative to noncarriers. Gene expression studies in human and rodent species show high levels of KIBRA in the hippocampus, particularly in the subfields. The goal of the present study was to determine whether the KIBRA C→T polymorphism is also associated with volume differences in the human hippocampus and whether specific subfields are differentially affected by KIBRA genotype. High-resolution magnetic resonance imaging (T2-weighted, voxel size=0.4×0.4 mm, in-plane) was used to manually segment hippocampal cornu ammonis (CA) subfields, dentate gyrus (DG), and the subiculum as well as adjacent medial temporal lobe cortices in healthy carriers and noncarriers of the KIBRA T-allele (rs17070145). Overall, we found that T-carriers had a larger hippocampal volume relative to noncarriers. The structural differences observed were specific to the CA fields and DG regions of the hippocampus, suggesting a potential neural mechanism for the effects of KIBRA on episodic memory performance reported previously.
KIBRA 基因与几项最近的报告中的情景记忆有关;与非携带者相比,T 等位基因的携带者表现出增强的情景记忆表现。人类和啮齿动物物种的基因表达研究表明,KIBRA 在海马体中具有高水平的表达,特别是在亚区。本研究的目的是确定 KIBRA C→T 多态性是否也与人类海马体体积差异相关,以及特定的亚区是否受到 KIBRA 基因型的不同影响。使用高分辨率磁共振成像(T2 加权,体素大小=0.4×0.4mm,平面内)手动分割健康携带者和非携带者的海马体角回(CA)亚区、齿状回(DG)和下托以及相邻的内侧颞叶皮质的 KIBRA T 等位基因(rs17070145)。总体而言,我们发现 T 携带者的海马体体积相对较大。观察到的结构差异特定于海马体的 CA 区和 DG 区,这表明 KIBRA 对以前报告的情景记忆表现的影响的潜在神经机制。