首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Carboxypeptidase D is a potential candidate to carry out redundant processing functions of carboxypeptidase E based on comparative distribution studies in the rat central nervous system.
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Carboxypeptidase D is a potential candidate to carry out redundant processing functions of carboxypeptidase E based on comparative distribution studies in the rat central nervous system.

机译:基于在大鼠中枢神经系统中的比较分布研究,羧肽酶D是执行羧肽酶E的冗余加工功能的潜在候选者。

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摘要

Post-translational processing is essential for the biological activation of many proteins and peptides. After precursor cleavage at specific single residues or pairs of basic residues by the proprotein convertases, the C-terminal basic residues are removed. Carboxypeptidase E was thought to be the only enzyme responsible. Recent studies with carboxypeptidase E-deficient mice, Cpe(fat)/Cpe(fat), indicated the existence of carboxypeptidase E-like carboxypeptidases, such as carboxypeptidase D. In order to define potential redundant functions in vivo, we compared the distributions of both carboxypeptidases in the rat central nervous system and selected endocrine tissues. Carboxypeptidase D messenger RNA was abundantly expressed in glial cells in the gray and white matter, while neurons in several brain regions, such as the piriform cortex, basolateral amygdala and hippocampus, also expressed high levels of carboxypeptidase D messenger RNA. Co-localization of carboxypeptidases E and D messenger RNAs was observed in many brain regions, the spinal cord and endocrine tissues. Immunohistochemistry showed the intracellular distribution of carboxypeptidase D with a perinuclear pattern. The extensive distribution of carboxypeptidase D in both glial and neuronal cells indicates the important role of carboxypeptidase D in peptide processing, possibly working together with furin, a ubiquitously expressed proprotein convertase. The co-localization of carboxypeptidases D and E suggests that carboxypeptidase D may, at least partially, compensate for carboxypeptidase E processing functions in Cpe(fat)/Cpe(fat) mice.
机译:翻译后加工对于许多蛋白质和肽的生物激活至关重要。在前体被原蛋白转化酶切割成特定的单个残基或成对的碱性残基后,除去C末端的碱性残基。羧肽酶E被认为是唯一负责的酶。羧肽酶E缺陷型小鼠Cpe(fat)/ Cpe(fat)的最新研究表明,存在羧肽酶E样羧肽酶(如羧肽酶D)。为了定义体内潜在的冗余功能,我们比较了两者的分布大鼠中枢神经系统和选定的内分泌组织中的羧肽酶。羧肽酶D信使RNA在灰质和白质的神经胶质细胞中大量表达,而大脑的多个区域(如梨状皮层,基底外侧杏仁核和海马体)的神经元也表达高水平的羧肽酶D信使RNA。在许多大脑区域,脊髓和内分泌组织中观察到羧肽酶E和D信使RNA的共定位。免疫组织化学显示羧肽酶D在细胞内的分布具有核周模式。羧肽酶D在神经胶质细胞和神经元细胞中的广泛分布表明羧肽酶D在肽加工中的重要作用,可能与弗林蛋白酶(一种普遍表达的前蛋白转化酶)协同作用。羧肽酶D和E的共定位表明,羧肽酶D可以至少部分补偿Cpe(fat)/ Cpe(fat)小鼠中的羧肽酶E的加工功能。

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