Multiple receptor sites in Achatina fulica ferussac neurons for a molluscan tetrapeptide amide (FMRF-AMDE)

The effects of Phe-Met-Arg-Phe-NH2 (FMRF-amide) and its analogue Phe-Leu-Arg-Phe-NH2 (FLRF-amide) on the nervous system were studied on thirtyfour identified neurons of the snail Achatina fulica Ferussac (locally known as "siput babi"). The results showed that FMRF-amide and FLRF-amide ind...

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Main Authors: Kim, Kah Hwi, Muhamad, M.A., Cheah, Swee Hung, Raman, A.
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Published: Faculty of Medicine, University of Malaya 1996
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Online Access:http://eprints.um.edu.my/24437/
https://jummec.um.edu.my/article/view/4387
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spelling my.um.eprints.244372020-06-02T02:53:35Z http://eprints.um.edu.my/24437/ Multiple receptor sites in Achatina fulica ferussac neurons for a molluscan tetrapeptide amide (FMRF-AMDE) Kim, Kah Hwi Muhamad, M.A. Cheah, Swee Hung Raman, A. R Medicine The effects of Phe-Met-Arg-Phe-NH2 (FMRF-amide) and its analogue Phe-Leu-Arg-Phe-NH2 (FLRF-amide) on the nervous system were studied on thirtyfour identified neurons of the snail Achatina fulica Ferussac (locally known as "siput babi"). The results showed that FMRF-amide and FLRF-amide induced three different types of responses on the membrane potential of these neurons. First, FMRF-amide and FLRF-amide induced slow hyperpolarizing responses in TAN, d-LCDN, RAPN, d-LPeCN and V-RPLN. These responses remained unchanged in Cl--free, Ca2+ -free and 20% Na+ saline. The hyperpolarization was slightly reduced in 200% K+ and slightly enhanced in 50% K+ saline. Thus, the slow hyperpolarizing responses induced by FMRF-amide and FLRF-amide in the above neurons were K + -dependent. Second, FMRF-amide and FLRF-amide induced rapid and transient hyperpolarizing responses on RPeNLN, LPeNLN and TAN-2. The effect persisted in 200% K+, 20% Na+ and Ca2+ -free saline. However, in Cl--free saline, the effects were transient rapid depolarizing responses. This observation suggested that CI- was responsible for the hyperpolarizing responses. Third, FMRF-amide and FLRF-amide induced depolarizing responses in INN and this effect remained unchanged in Ca2+ -free saline. However, in 20% Na+ saline, the depolarizing responses were abolished. Thus, the involvement of Na+ was implicated in the observed depolarizing responses. The observed 3 different responses induced by FMRF-amide and FLRF-amide on Achatina fulica Ferussac neurons were comparable to their effects on the neurons of the gastropods Aplysia and Helix. Thus, FMRF-amide induced its multiple effects via multiple receptor sites, analogous to its action on Helix and Aplysia neurons Faculty of Medicine, University of Malaya 1996-12 Article PeerReviewed Kim, Kah Hwi and Muhamad, M.A. and Cheah, Swee Hung and Raman, A. (1996) Multiple receptor sites in Achatina fulica ferussac neurons for a molluscan tetrapeptide amide (FMRF-AMDE). Journal of the University of Malaya Medical Centre (JUMMEC), 1 (2). pp. 33-38. ISSN 1823-7339 https://jummec.um.edu.my/article/view/4387
institution Universiti Malaya
building UM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaya
content_source UM Research Repository
url_provider http://eprints.um.edu.my/
topic R Medicine
spellingShingle R Medicine
Kim, Kah Hwi
Muhamad, M.A.
Cheah, Swee Hung
Raman, A.
Multiple receptor sites in Achatina fulica ferussac neurons for a molluscan tetrapeptide amide (FMRF-AMDE)
description The effects of Phe-Met-Arg-Phe-NH2 (FMRF-amide) and its analogue Phe-Leu-Arg-Phe-NH2 (FLRF-amide) on the nervous system were studied on thirtyfour identified neurons of the snail Achatina fulica Ferussac (locally known as "siput babi"). The results showed that FMRF-amide and FLRF-amide induced three different types of responses on the membrane potential of these neurons. First, FMRF-amide and FLRF-amide induced slow hyperpolarizing responses in TAN, d-LCDN, RAPN, d-LPeCN and V-RPLN. These responses remained unchanged in Cl--free, Ca2+ -free and 20% Na+ saline. The hyperpolarization was slightly reduced in 200% K+ and slightly enhanced in 50% K+ saline. Thus, the slow hyperpolarizing responses induced by FMRF-amide and FLRF-amide in the above neurons were K + -dependent. Second, FMRF-amide and FLRF-amide induced rapid and transient hyperpolarizing responses on RPeNLN, LPeNLN and TAN-2. The effect persisted in 200% K+, 20% Na+ and Ca2+ -free saline. However, in Cl--free saline, the effects were transient rapid depolarizing responses. This observation suggested that CI- was responsible for the hyperpolarizing responses. Third, FMRF-amide and FLRF-amide induced depolarizing responses in INN and this effect remained unchanged in Ca2+ -free saline. However, in 20% Na+ saline, the depolarizing responses were abolished. Thus, the involvement of Na+ was implicated in the observed depolarizing responses. The observed 3 different responses induced by FMRF-amide and FLRF-amide on Achatina fulica Ferussac neurons were comparable to their effects on the neurons of the gastropods Aplysia and Helix. Thus, FMRF-amide induced its multiple effects via multiple receptor sites, analogous to its action on Helix and Aplysia neurons
format Article
author Kim, Kah Hwi
Muhamad, M.A.
Cheah, Swee Hung
Raman, A.
author_facet Kim, Kah Hwi
Muhamad, M.A.
Cheah, Swee Hung
Raman, A.
author_sort Kim, Kah Hwi
title Multiple receptor sites in Achatina fulica ferussac neurons for a molluscan tetrapeptide amide (FMRF-AMDE)
title_short Multiple receptor sites in Achatina fulica ferussac neurons for a molluscan tetrapeptide amide (FMRF-AMDE)
title_full Multiple receptor sites in Achatina fulica ferussac neurons for a molluscan tetrapeptide amide (FMRF-AMDE)
title_fullStr Multiple receptor sites in Achatina fulica ferussac neurons for a molluscan tetrapeptide amide (FMRF-AMDE)
title_full_unstemmed Multiple receptor sites in Achatina fulica ferussac neurons for a molluscan tetrapeptide amide (FMRF-AMDE)
title_sort multiple receptor sites in achatina fulica ferussac neurons for a molluscan tetrapeptide amide (fmrf-amde)
publisher Faculty of Medicine, University of Malaya
publishDate 1996
url http://eprints.um.edu.my/24437/
https://jummec.um.edu.my/article/view/4387
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