The carboxypeptidase D homolog silver regulates memory formation via insulin pathway in Drosophila
Binyan Lu, Yi Zhao, Jie Zhao, Xiaoyang Yao, Yichun Shuai, Weiwei Ma, Yi Zhong
The carboxypeptidase D homolog silver regulates memory formation via insulin pathway in Drosophila
[1] |
Babri S, Badie HG, Khamenei S, Seyedlar MO (2007) Intrahippocampal insulin improves memory in a passive-avoidance task in male wistar rats. Brain Cogn 64:86–91
CrossRef
Google scholar
|
[2] |
Bellen HJ,Tong C,Tsuda H (2010) 100 yearsof Drosophila research and its impact on vertebrate neuroscience: a history lesson for the future. Nat Rev Neurosci 11:514–522
CrossRef
Google scholar
|
[3] |
Benedict C, Hallschmid M, Hatke A, Schultes B, Fehm HL, Born J, Kern W (2004) Intranasal insulin improves memory in humans. Psychoneuroendocrinology 29:1326–1334
CrossRef
Google scholar
|
[4] |
Davis RL (2005) Olfactory memory formation in Drosophila: from molecular to systems neuroscience. Annu Rev Neurosci 28:275–302
CrossRef
Google scholar
|
[5] |
Dong W, Fricker LD, Day R (1999) 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. Neuroscience 89:1301–1317
CrossRef
Google scholar
|
[6] |
Dubnau J, Chiang AS, Grady L, Barditch J, Gossweiler S, McNeil J, Smith P, Buldoc F, Scott R, Certa U
CrossRef
Google scholar
|
[7] |
Fricker LD (2005) Neuropeptide-processing enzymes: applications for drug discovery. AAPSJ 7:E449–455
|
[8] |
Heisenberg M (2003) Mushroom body memoir: from maps to models. Nat Rev Neurosci 4:266–275
CrossRef
Google scholar
|
[9] |
Kauffman AL, Ashraf JM, Corces-Zimmerman MR, Landis JN, Murphy CT (2010) Insulin signaling and dietary restriction differentially influence the decline of learning and memory with age. PLoS Biol 8:e1000372
|
[10] |
Liu XJ, Yuan XJ, Sun K, Shuai YC, Song QX, Wang L, Shao LS, Zhao XY, Lu YS, Lue YB
|
[11] |
Lu YB, Lu YS, Shuai YC, Feng CH, Tully T, Xie ZP, Zhong Y, Zhou HM (2007) The AKAP Yu is required for olfactory long-term memory formation in Drosophila. Proc Natl Acad Sci USA 104:13792–13797
CrossRef
Google scholar
|
[12] |
Naggert JK, Fricker LD,Varlamov O, Nishina PM, Rouille Y, Steiner DF, Carroll RJ, Paigen BJ, Leiter EH (1995) Hyperproinsulinaemia in Obese Fat/Fat Mice Associated with a Carboxypeptidase-E Mutation Which Reduces Enzyme-Activity. Nat Genet 10:135–142
CrossRef
Google scholar
|
[13] |
Nässel DR, Kubrak OI, Liu YT, Luo JN, Lushchak OV (2013) Factors that regulate insulin producing cells and their output in Drosophila. Front Physiol 4:252
|
[14] |
Sidyelyeva G, Wegener C, Schoenfeld BP, Bell AJ, Baker NE, McBride SMJ, Fricker LD (2010) Individual carboxypeptidase D domains have both redundant and unique functions in Drosophila development and behavior. Cell Mol Life Sci 67:2991–3004
CrossRef
Google scholar
|
[15] |
Skidgel RA, Erdos EG (1998) Cellular carboxypeptidases. Immunol Rev 161:129–141
CrossRef
Google scholar
|
/
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